研究成果

2022年度

学術論文

  1. Hybridization of papain molecules and DNA-wrapped single-walled carbon nanotubes evaluated by atomic force microscopy in fluids, Scientific Reports
    Masaki Kitamura, Kazuo Umemura, 13, 4833, 2023.(査読有)

  2. Continues Fermi level tuning of Nb-doped WSe2 by the external electric field
    K. Hisama, Y. Gao, M. Maruyama, R. Kitaura, S. Okada, Jpn. J. Appl. Phys. 61, 015002 (2022). (査読有)

  3. Investigation of bactericidal effect of a mid-infrared free electron laser on Escherichia coli
    T. Toyama, J. Fujioka, K. Watanabe, A. Yoshida, T. Sakuma, K. Inaba, T. Imai, T. Nakajima, K. Tsukiyama, N. Hamada, and F. Yoshino, Sci. Rep., 12 pp 18111, 2022. (査読有)

  4. Improved Activity for the Oxygen Evolution Reaction using a Tiara-like Thiolate-protected Nickel Nanocluster
    S. Funaki, T. Kawawaki, T. Okada, K. Takemae, S. Hossain, Y. Niihori, T. Naitoh, M. Takagi, T. Shimazaki, S. Kikkawa, S. Yamazoe, Tachikawa, Y. Negishi, Nanoscale, 15, 5201-5208 (2023). (査読有)

  5. Electronic band engineering of Mg2Si by isoelectronic impurity doping: a first-principles study for enhancing thermoelectric properties
    K. Imai, R. Ikebuchi, N. Hirayama, N. Hamada, and Y. Imai, Jpn. J. Appl. Phys. 62, SD1007, 2023(査読有)

  6. スクッテルダイトCoSb3の電子構造と輸送特性
    阿武宏明,橋國克明,山陽小野田市立山口東京理科大学紀要,第6号,23–30(2023年3月13日)(査読有)

  7. Promotion of the structural repair of graphene oxide thin films by thermal annealing in water-ethanol vapor
    Ryota Negishi, Takuya Nakagiri, Masashi Akabori, and Yoshihiro Kobayashi, Thin Solid Films, 10 Apri1, 2023 to be aceepted for publications(査読有)

  8. Thermoelectrical random stick network method and its application to carbon nanotube films
    Junei Kobayashi, Takahiro Yamamoto, Japanese Journal of Applied Physics, 61 09500130,August 2022(査読有)

  9. Correlation between copper particle morphology and number of graphene layers on a palladium substrate
    Junro Takahashi, Kengo Nakamura, Yusei Kioka, Hiroki Kato, Takahiro Yamamoto, and Yoshikazu Homma, Appl. Phys. Express 16, 015503, 2023(査読有)

  10. Surface atomic structures of nickel plating films reacted with methane at high temperature
    K. Miyazawa*, M. Asahara, T. Miyasaka, T. Nagai, K. Kimoto,Y. Tanaka*, Surface and Interface Analysis, 55, pp. 321-328 (2023)(査読有)

  11. Horizontal arrays of one-dimensional van der Waals heterostructures as transistor channels
    S. Matsushita, K. Otsuka*, T. Sugihara, G. Zhu, K. Kittipaisalsilpa, M. Lee, R. Xiang,S. Chiashi, S. Maruyama*, ACS Appl. Mater. Inter., (2023), 15-8, 10965-10973. (査読有)

  12. Carbon dioxide triggers carbon nanotube nucleation: isotope labeling study on the growth process of individual nanotubes
    R. Ishimaru, K. Otsuka†, T. Inoue, S. Chiashi, S. Maruyama†, ECS J. Solid State Sc., 11, 071002 (2022).

    他28件

招待講演

  1. A Micron Size Optical Sensor Using Single-Walled Carbon Nanotubes and Diatom Frustule
    Kazuo Umemura, 2022 International Conference on Nanoscience and Nanotechnology,December 8-9, 2022, Hotel Oazis, Butuan City, Philippines

  2. Microbiodevices developed via the eASIA research project
    Kazuo Umemura, Leo Cristobal C. Ambolode II, Mai Anh Tuan, Eko Siswoyo, 2022 International Conference on Advanced Functional Materials and Nanotechnology (ICAFMN) & 24th Samahang Pisika ng Visayas at Mindanao National Physics Conference, October 27-28, 2022, Metrocentre Hotel and Panda Tea Garden Suites, Tagbilaran City, Bohol, Philippines

  3. Smart mechatronics based on piezoelectric polymer energy harvesting
    Takashi Nakajima, The 17th International Conference on Nano/Micro Engineered and Molecular Systems (IEEE-NEMS 2022), Online. 2022

  4. 柔軟性材料を用いたIoTセンサデバイス
    中嶋宇史, 第16回グリーンシステム技術分科会, オンライン, 2022

  5. 高分子圧電材料の物性と応用例
    中嶋宇史, 第24回圧電MEMS研究会, 東京, 2022

  6. 水素社会の実現に向けた金属ナノクラスターを用いた触媒創製の取り組み
    川脇徳久, 旭化成株式会社定期講演会,オンライン, 2022年7月22日,招待講演

  7. 金属クラスター触媒の水素生成への応用
    川脇徳久, 新学術領域ハイドロジェノミクス第9回若手育成スクール 自然科学研究機構 岡崎コンファレンスセンター, 2022年9月26日,招待講演

  8. 液相合成した金属ナノクラスターの触媒応用
    川脇徳久, DV-Xα研究協会量子材料化学講演会, 岡山理科大学, 2022年12月3日,招待講演

  9. 金属ナノクラスターのエネルギー・環境分野への触媒応用
    川脇徳久, 日本金属学会鉄鋼協会・関西分析研究会, 龍谷大学大宮学舎, 2023年1月23日,招待講演

  10. Anomalous carrier transport properties in multilayer graphene materials with a weak interlayer coupling synthesized by a solid template method
    Ryota Negishi, The 19th International Symposium on Bioscience and Nanotechnology, Japan (Nov.2, 2022) Keynote speaker

  11. Thermoelectricity and SDGs
    Hidetoshi Fukuyama, ICOT2022, Japan (1124, 2022) Keynote speaker

  12. ナノカーボン特別講演 マルチハザード時代の都市防災科学技術 〜東京理科大学の取り組み〜
    山本貴博, 第23回国際ナノテクノロジー総合展・技術会議,東京ビックサイト,2023,2,1

  13. HRTEM-EELS Analyses of Carbon Nanostructures for Catalytic Applications
    K. Miyazawa, Y. Tanaka, 6th Global Webinar on Materials Science & Engineering (GWMSE-2023), WEB, 2023

  14. セラミックエレクトレットの創成と静電ハーベスターへの展開
    田中優実, 加納一彦, MEMS センシング&ネットワークシステム展2023 特別シンポジウム「MEMS・半導体次世代テクノロジーフォーラム」, 東京, 2023

  15. セラミックエレクトレットの創成とそのデバイス応用
    田中優実, 加納一彦, 第3回応用物理学会秋季学術講演会シンポジウム「エネルギーハーベスティングの新展開」, 宮城, 2022

  16. Mechanical and structural changes in the surface of SUS304 and SUS316L austenitic stainless steels that were subjected to repeated cryogenic heat treatments
    K. Miyazawa,Y. Tanaka, R. Suzuki, M. Tachibana, “5th IUMRS-ICYRAMB 2022, WEB, 2022

  17. 環境発電への適用に向けたセラミックエレクトレットの開発
    田中優実, 新化学技術推進協会環境技術部会勉強会, WEB, 2022

  18. Phase transition behavior of encapsulated water molecules in single-walled carbon nanotubes
    *S. Chiashi, K. Sasaoka, Y. Maekawa, T. Yamamoto, Y. Homma, (**) 8th Annual Workshop on Nanotube Optics and Nanotube Spectroscopy (Wonton 2022) (University of Wisconsin-Madison, Memorial Union, Madison, U. S.A. ).

著書

  1. 計算科学を活用した熱電変換材料の研究開発動向
    山本貴博,(株)シーエムシー・リサーチ, 第III編 第2章(11ページ), 2022 年 4 月 12 日

  2. Quantum Hybrid Electronics and Materials
    Ryota Negishi,and Yoshihiro Kobayashi, Springer, pp149-180,2022

  3. 物理学レクチャーコース 物理数学
    橋爪洋一郎,(裳華房)10月25日

  4. Suspended Carbon Nanotubes for Quantum Hybrid Electronics in Quantum Hybrid Electronics and Materials in Quantum Hybrid Electronics and Materials
    Yoshikazu Homma,Takumi Inaba, and Shohei Chiashi, Ed. by Yoshiro Hirayama, Kazuhiko Hirakawa, Hiroshi Yamaguchi, Springer, pp 99-122, 2022

特許

  1. コンテンツ再生制御システム
    田中聖二、市川充史、小野新平、寺瀬勇人,中嶋宇史,洲崎崇、特願2022-165745 (2022.10.14)

  2. 情報処理方法、情報処理装置、情報処理プログラム及び記録媒体
    長谷川幹雄、中嶋宇史、酒造孝、特願2022-155623(2022.9.28)

  3. 位置検出システム、位置検出サーバ、制御装置、位置検出方法、及びプログラム
    中嶋宇史、長谷川幹雄、酒造孝、特願2022-151941(2022.9.22)

  4. 圧力分布計測システム、圧力分布計測方法、圧力分布計測プログラム、及び差動増幅計測の測定回路
    中嶋宇史、横山諒伍、特願2022-087189(2022.5.27)

  5. 熱放射体、光スペクトル変換素子、及び光電変換装置
    宮内雄平、西原大志、高倉章、小鍋哲、特願2022-093277 (出願日:2022年6月8日)

受賞

  1. 第19回Honda-Fujishima Prize,電気化学会, 2022
    川脇徳久(根岸研究室,講師)

  2. 若い世代の特別講演証,日本化学会, 2023
    川脇徳久(根岸研究室,講師)

  3. アジア熱科学会議 貢献賞(Distingished contribution to thermal science), Second Asian Conference on Thermal Science (2nd ACTS),2022,4,16
    山本貴博

  4. 日本表面真空学会フェロー, 公益社団法人日本表面真空学会, 2022
    山本貴博

  5. 2021年日本表面真空学会学術講演会講演奨励賞 スチューデント部門, 公益社団法人日本表面真空学会,2022,5,21
    小林遵栄(山本研究室,D1)

  6. ポスター講演最優秀賞「CNTの電流ゆらぎに及ぼすフォノン散乱の影響」, 東京理科大学総合研究院ナノカーボン研究部⾨,2023年3月10日
    住吉亜衣菜(山本研究室,M1)

    他20件

2021年度

学術論文

  1. Dispersion of Carbon Nanotubes with “Green” Detergents
    Kazuo Umemura, Ryo Hamano, Hiroaki Komatsu, Takashi Ikuno, and Eko Siswoyo,Molecules 26(10), 2908, 2021(査読有).

  2. Sinking of Four Species of Living Diatom Cells Directly Observed by a “Tumbled” Optical Microscope
    Ryo Hamano, Shingo Shoumura, Yuto Takeda, Tokio Yamazaki, Kota Hirayama, Yasutaka Hanada, Shiegki Mayama, Masaharu Takemura, Han-Jia Lin and Kazuo Umemura,Microscopy and Microanalysis, 27, 5, 1154-1160, 2021(査読有).

  3. Ion-Selective Covalent Organic Framework Membrane as a Catalytic Polysulfide Trap to Arrest Redox Shuttle Effect in Lithium–Sulfur Batteries
    K. Sun, C. Wang, Y. Dong, P. Guo, P. Cheng, Y. Fu, D. Liu, D. He, S. Das, Y. Negishi,ACS Appl. Mater. Interfaces, 14, 4079-4090 (2022)(査読有).

  4. Chirality Distributions for Semiconducting Single-Walled Carbon Nanotubes Determined by Photoluminescence Spectroscopy
    Masaru Irita, Takahiro Yamamoto, Yoshikazu Homma, Nanomaterials, 11, 2021(査読有).

  5. Wafer-Scale Growth of One-Dimensional Transition Metal Chalcogenide Nanowires
    H. E. Lim, Y. Nakanishi, Z. Liu, J. Pu, M. Maruyama, T. Endo, C. Ando, H. Shimizu, K. Yanagi, S. Okada, T. Takenobu, Y. Miyata, Nano Lett. 21, 243-249 (2021)(査読有).

  6. Carrier distribution control in bilayer graphene under a perpendicular electric field by interlayer stacking arrangements
    Y. Gao, S. Okada, Appl. Phys. Express 14, 035001 (2021)(査読有).

  7. Scanning probe analysis of twisted graphene grown on a graphene/silicon carbide template
    Yao Yao, Ryota Negishi, Daisuke Takajo, Makoto Takamura, Yoshitaka Taniyasu and Yoshihiro Kobayashi, Nanotechnology, Vol.33 pp 155603/1-8, 2022(査読有).

  8. Crossover point of the field effect transistor and interconnect applications in turbostratic multilayer graphene nanoribbon channel
    Ryota Negishi, Katsuma Yamamoto, Hirofumi Tanaka, , Seyed Ali Mojtahedzadeh, Nobuya Mori, Yoshihiro Kobayashi,Scientific Reports, Vol. 11, pp 10206/1-12, 2021(査読有).

  9. Enhanced thermoelectric performance of vertical Bridgman-grown Mg2Si by codoping with Sb and Zn
    D. Shiojiri, T. Iida, H. Hamba, T. Kodama, M. Yamaguchi, N. Hirayama, and Y. Imai, Journal of Electronic Materials 51, pp 1311-1321, 2022(査読有).

  10. First-Principles Study of the Structural and Thermoelectric Properties of Y-Doped α-SrSi2
    M. Yamaguchi, D. Shiojiri, T. Iida, N. Hirayama, and Y. Imai, Japanese Journal of Applied Physics 61, pp 031002, 2022(査読有).

  11. Self-powered Fault Diagnosis Using Vibration Energy Harvesting and Machine Learning
    Kota Tsuchikawa, Tomohiro Sato, Mitsuki Funato, Kiyotaka Imai, and Takashi Nakajima,Sensors and Materials, Vol. 34, No. 5 (2022) 1909–1916(査読有).

  12. Optimization of Thermoelectric Power Factor of Bilayer Graphene by Vertical Electric Field
    H. Horii, M. Matsubara, K. Sasaoka, T. Yamamoto, and H. Fukuyama,J. Phys. Soc. Jpn., 90, 104711(査読有).

  13. Maximum Thermoelectric Power Factor and Optimal Carrier Concentration of Bilayer Graphene at Various Temperatures
    H. Horii, M. Matsubara, K. Sasaoka, and T. Yamamoto,e-JSSNT., 19, 125 (2021)(査読有).

  14. Thermal properties of single-walled carbon nanotube forests with various volume fractions
    J. Cha, K. Hasegawa, J. Lee, I. Y. Stein, A.Miura, S. Noda, J. Shiomi, S. Chiashi, Int. J. Heat Mass Transfer, 171, 121076-1-6 (2021)(査読有).

  15. Photoluminescence from Single-Walled MoS2 Nanotubes Coaxially Grown on Boron Nitride Nanotubes
    M. Liu, K. Hisama, Y. Zheng, M. Maruyama, S. Seo, A. Anisimov, T. Inoue, E. I. Kauppinen, S. Okada, S. Chiashi, R. Xiang, S. Maruyama,ACS Nano, 15, 8418 (2021)(査読有).

  16. Thermoelectric Effect in Mott Variable-Range Hopping
    T. Yamamoto, M. Ogata, H. Fukuyama,Journal of the Physical Society of Japan,91号:4 044704-1〜044704-4,2022/3/25(査読有).

  17. Chirality Distributions for Semiconducting Single-Walled Carbon Nanotubes Determined by Photoluminescence Spectroscopy
    Masaru Irita, Takahiro Yamamoto, Yoshikazu Homma,Nanomaterials, 11, 2309, 2021(査読有).

  18. Theory of exciton thermal radiation in semiconducting single-walled carbon nanotubes
    S. Konabe, T. Nishihara, and Y. Miyauchi,Optics Letters 46,3021-3024,2021(査読有).

  19. LAMMPS molecular dynamics simulation of methane decomposition on nickel thin films at high temperatures
    K. Miyazawa, Y. Tanaka,Surface Science, 713, PP. 121904_1-10 (2021)(査読有).

    他27件

招待講演

  1. Conjugates of Nanocarbons with Asian Biomolecules
    Kazuo Umemura, The 10th International Conference on Nanostructures, Nanomaterials and Nanoengineering 2021 (ICNNN 2021), オンライン開催, 2021

  2. Potentials of digital holographic microscopy for life sciences
    Kazuo Umemura, International Symposium on Nanoscience and its Applications (ISNA), オンライン開催, 2021

  3. 乱層構造を持つ多層グラフェンナノリボンの合成およびキャリア輸送現象
    根岸良太, シリコン材料・デバイス研究会, オンライン, 2021年11月11~12日

  4. Development of low-consumption diagnostic edge device by integrating vibration energy harvesting and machine learning
    Takashi Nakajima, 1st International Conference on ENERGY Materials (ICEM2021), Online, November 7, 2021

  5. フレキシブル圧電ポリマーを用いた振動エネルギーハーベスティング~振動発電能とデバイス展開の可能性~
    中嶋宇史, 日本機械学会 2021年度 年次大会、オンライン、2021年9月8日

  6. Theoretical Prediction of Optimal Thermoelectric Properties of Low-Dimensional Nanomaterials
    Manaho Matsubara,Junei Kobayashi, Hikaru Horii, Kenji Sasaoka, Takahiro Yamamoto, and Hidetoshi Fukuyama, The 11th The International Conference on Flexible and Printed Electronics (ICFPE), Online, 2021/9/30

  7. Phase of water confined at single-walled carbon nanotube
    Yoshikazu Hommaand Shohei Chiashi, Pacifichem2021, Online, December 19, 2021

  8. Synthesis of single-walled carbon nanotube @ boron nitride nanotubes and their optical properties
    S. Chiashi, 14th Symposium on Nanotube Spectroscopy, Photonics, and Applications in Metrology (NT21 satellite), (Rice University, USA (Online)),2021

  9. Development of Ceramic Electrets For Vibrational Power Generator
    Y. Tanaka, Power MEMS 2021 at virtual (2021.12.6)

  10. 炭素基板上に作製された白金ナノ粒子の原子構造評価
    宮澤薫一, 田中優実,第16回ナノ・バイオメディカル学会 (2021.11.25)

    他15件

著書

  1. Synthesis and transport analysis of turbostratic multilayer graphene (Chapter 8) in Quantum Hybrid Electronics and Materials
    Ryota Negishi, and Yoshihiro Kobayashi,Springer, to be sublished in 2022.

  2. Concepts and Design of Materials Nanoarchitectonics, Ch. 8 Atomic-scale characterization of the platinum nanoparticles deposited on C60 fullerene nanowhiskers and related carbon nanomaterials
    K. Miyazawa, M. Yoshitake, Y. Tanaka,pp. 168-192, Royal Society of Chemistry (UK) (2022.2.16).

  3. 熱電応答理論の最近の発展とその応用
    山本貴博,小形正男,福山秀敏,日本物理学会誌, 2021 年 4 月.

  4. 第1章 振動発電 7 イオン電導を利用したセラミックエレクトレット材料
    田中優実,環境発電ハンドブック第2版, pp. 36-53 (2021.10).

特許

  1. 地震による建造物の損傷の計測方法及び計測システム
    内田秀樹,山本貴博,伊藤拓海,森健士郎,中嶋宇史橋爪洋一郎,元祐昌廣,特願2022-061286(2022.3.31).

  2. 熱電変換モジュール
    内田秀樹、中嶋宇史、元祐昌廣、山本貴博,特願PCT/JP2022/016309(2022.3.30).

受賞

  1. 第39回学術賞「金属クラスターの構造制御とエネルギー・環境触媒への応用」, 日本化学会, 2021
    根岸雄一

  2. 花王科学奨励賞「原子精度で制御された貴金属クラスターを用いた高機能触媒の創製」, 公益財団法人 花王芸術・科学財団,2022
    川脇徳久

  3. Silver Award, MRM2021 Poster Award,2022
    川脇徳久

  4. 講演奨励賞「垂直電場下での二層グラフェンの熱電性能の最適化」, 2022年 日本表面真空学会学術講演会,2021年5月21日
    掘井 耀(山本研究室,D3)

    他17件

2020年度

学術論文

  1. Characterization of a Weyl semimetal using a unique feature of surface plasmon polaritons,Kota Tsuchikawa
    Satoru Konabe, Takahiro Yamamoto, Shiro Kawabata,PHYSICAL REVIEW B,Vol. 102, 035443 – Published 30 July 2020(査読有).

  2. Optimal Thermoelectric Power Factor of Narrow-Gap Semiconducting Carbon Nanotubes with Randomly Substituted Impurities
    Manaho Matsubara, Kenji Sasaoka, Takahiro Yamamoto, Hidetoshi Fukuyama,Journal of the Physical Society of Japan,Volume 90, Number 4,2020(査読有).

  3. Analysis of vibration behavior in single strand DNA-wrapped single-walled carbon nanotubes adhered to lipid membranes, Daisuke Miyashiro
    Ryo Hamano, HisaoTaira, Kazuo Umemura, Forces in Mechanics, 2, J100008 (2020)(査読有).

  4. Mechanical vibration of single-walled carbon nanotubes at different lengths and carbon nanobelts by modal analysis method
    Daisuke Miyashiro, Hisao Taira, Ryo Hamano, Rosario L. Reserva, Kazuo Umemura, Composites Part C: Open Access, 2, 100028, (2020)(査読有).

  5. Energetics and electronic structures of single walled carbon nanotubes encapsulated in boron nitride nanotubes,
    K. Hisama, S. Chiashi, S. Maruyama, and S. Okada, Applied Physics Express 13, 015004 (2020)(査読有).

  6. High-quality few-layer graphene on single-crystalline SiC thin film grown on affordable wafer for device applications
    N. Endoh, S. Akiyama, K. Tashima, K. Suwa, T. Kamogawa, R. Kohama, K. Funakubo, S. Konishi, H. Mogi, M. Kawahara, M. Kawai, Y. Kubota, T. Ohkochi, M. Kotsugi, K. Horiba, H. Kumigashira, M. Suemitsu, I. Watanabe, H. Fukidome,Nanomaterials accepted (2021).

  7. Investigation of local structures and electronic states of Sb-doped Mg2Si by fluorescence XAFS and HAXPES
    T. Kadono, N. Hirayama, T. Nishio, S. Yamazawa, N. Oki, Y. Takahashi, N. Takikawa, A. Yasui, K. Nitta, O. Sekizawa, M. Tokumura, S. Takemoto, T. Iida, M. Kotsugi,Appl. Phys. Lett. 117,143901, (2020) .

  8. Thiolate-Protected Metal Nanoclusters: Recent Development in Synthesis, Understanding of Reaction, and Application in Energy and Environmental Field
    T. Kawawaki, A. Ebina, Y. Hosokawa, S. Ozaki, D. Suzuki, S. Hossain, Y. Negishi, Small, (2021) in press. (査読有) .

  9. Creation of Active Water-splitting Photocatalysts by Controlling Cocatalysts Using Atomically Precise Metal Nanoclusters
    T. Kawawaki, Y. Kataoka, S. Ozaki, M. Kawachi, M. Hirata, Y. Negishi,  Chem. Commun., 57, 417-440 (2021)(査読有) .

  10. Understanding and Designing One-Dimensional Assemblies of Ligand-Protected Metal Nanoclusters
    S. Hossain, Y. Imai, Y. Motohashi, Z. Chen, D. Suzuki, T. Suzuki, Y. Kataoka, M. Hirata, T. Ono, W. Kurashige, T. Kawawaki, T. Yamamoto, Y. Negishi, Mater. Horizon, 7, 796-803, (2020)(査読有) .

  11. Experimental and theoretical studies on the surface morphology variation of a Ni substrate by graphene growth
    Junro Takahashi, Tomoyuki Ueyama, Kazuhito Kamei, Hiroki Kato, and Yoshikazu Homma, Appl. Phys. 129, 02430, 2021(査読有).

  12. Temperature dependence of photoluminescence spectra from a suspended single-walled carbon nanotube with water adsorption layer
    Yuta Saito, Yuichiro Tanaka, Genta Yamaguchi, Takashi Kato, Satoru Konabe, Shohei Chiashi, and Yoshikazu Homma, J. Appl. Phys., 129, 014301-1-014301-5, 2021(査読有).

  13. Turbostratic Stacking Effect in Multilayer Graphene on the Electrical Transport Properties
    Ryota Negishi, Chaopeng Wei, Yao, Yui Ogawa, Masashi Akabori, Yasushi Kanai, Kazuhiko Matsumoto, Yoshitaka Taniyasu, Yoshihiro Kobayashi, Phys. Status Solidi B., 257 (2020) pp 1900437/1-5(査読有).

  14. Production of vibration energy harvester with impact-sliding structure using magnetostrictive Fe-Co-V alloy rod
    S. Yamaura, T. Nakajima, Y. Kamata, T. Sasaki, T. Sekiguchi, J. Magn. Magn., 514, 167260 (2020)(査読有).

  15. Piezoelectric Polymer Multilayer Coating Method for Vibration Energy Harvester
    N. Kuriyama, T. Nakajima, R. Ichige, and T. Suzuki, Sens. Mater., 32, 2503 (2020)(査読有).

  16. Carbon nanotube/polydimethylsiloxane composite micropillar arrays using non-lithographic silicon nanowires as a template for performance enhancement of triboelectric nanogenerators
    C. Pinming, W. Wongwiriyapan, S. Rattanamai, N. Ketama, A. Treetong, T. Ikuno, G. Tumcharern, and A. Klamchuen, Nanotechnology, 32巻 pp 095303, 2020(査読有).

  17. A Toy Model Approach to Fractal Nature: Thermodynamics on a Cantor-Lattice Ising Model", Materials TransactionsMaterials Transactions
    Y. Hashizume,and T. Sugimoto,62, 374-379, (2021).(査読有).

  18. Enhancement of the electrical conductivity of defective carbon nanotube sheets for organic hybrid thermoelectrics by deposition of Pd nanoparticles
    Keisuke Oshima, Yukihide Shiraishi, Takuya Matsumura, Ayumi Kuriyama, Kazuki Taguchi, Junta Inoue, Hiroaki Anno and Naoki Toshima, Materials Advances, 1, 2926–2936 (2020).(査読有).

  19. Non-catalytic heteroepitaxial growth of aligned, large-sized hexagonal boron nitride single-crystals on graphite
    H. Arai, T. Inoue†, R. Xiang, S. Maruyama, S. Chiashi, Nanoscale, 12, 10399-10406 (2020)(査読有).

  20. Dry Drawability of Few-Walled Carbon Nanotubes Grown by Alcohol Chemical Vapor Deposition
    M. Okada†, S. Igimi, T. Inoue, X. Cheng, R. Xiang, S. Chiashi, Y. Inoue, Y. H. Wang, S. Maruyama, J. Phys. Chem. C, 124, 17331-17339 (2020)(査読有).

  21. Cross-sectional structural characterization of the surface of exfoliated HOPG using HRTEM-EELS
    K. Miyazawa, T. Nagai, K. Kimoto, M. Yoshitake, Y. Tanaka, Surface and Interface Analysis, 53[1], pp. 84-89, 2021(査読有).

  22. Charge storage observation in corona-charged oxy-hydroxyapatite ceramics
    Y. Yasuno, C. Itoga and Y. Tanaka, IEEE Transactions on Dielectrics and Electrical Insulation, 27[5], pp. 1415-1421, 2020(査読有).

  23. Catalytic activity of hybrid platinum nanoparticle-[C60] fullerene nanowhisker composites for 4-nitrophenol reduction
    J. W. Ko, K. Miyazawa, Y. Tanaka, W. B. Ko, Fullerenes Nanotubes and Carbon Nanostructures, 28[10], pp. 794-798, 2020(査読有).

  24. Stability of supercurrents in a superfluid phase of spin-1 bosons in an optical lattice
    S. Yamahika, R. Yoshii, and S. Tsuchiya, Phys. Rev. A 103, 043305 (2021)(査読有).

    他50件

招待講演

  1. ナノカーボン物質表面の水のミクロ構造
    山本貴博, 日本物理学会第76回年次大会,オンライン,2021年3月14日,招待講演

  2. カーボン材料表面の水のミクロ構造:計算科学とデータ科学アプローチ
    山本貴博, 前川 侑毅,笹岡 健二,加藤 幸一郎,渡辺 尚貴, MRM Forum 2020, オンライン,2020年12月 8日 ,招待講演

  3. Creation of a new research project based on Sakura Science Plan since 2014, 22nd SPVM National Physics Conference: ConVIRTUALisation
    Kazuo Umemura,17th, 24th, and 31th, October, 2020, online, 招待講演

  4. Mechanical Force of Single Strand DNA-Wrapped Single-Walled Carbon Nanotubes Acting on Cell Membranes for Drug Delivery
    Daisuke Miyashiro, Hisao Taira, Ryo Hamano, and Kazuo Umemura, 22nd SPVM National Physics Conference: ConVIRTUALisation, 17th, 24th, and 31th, October, 2020, online, 招待講演

  5. Coercivity Analysis based on extended Landau free energy landscape
    M. Kotsugi,日本磁気学会学術講演会16, Dec. (2020) Online

  6. Phase transition of water confined in carbon nanotube observed by photoluminescence spectroscopy
    Yoshikazu Homma, and Shohei Chiashi, The Annual Meeting of the Spectroscopical Society of Japan 2020, Online, November 27, 2020

  7. 振動エネルギーハーベスティングと機械学習の融合による低消費診断系エッジデバイスの開発
    中嶋宇史, 第68回応用物理学会春季学術講演会、オンライン、2021年3月18日

  8. 半導体カーボンナノチューブにおける励起子熱ふく射
    小鍋哲, 西原大志,宮内雄平,第30回MRS年次大会,オンライン開催,2020

  9. 白金/カーボン系電極触媒の相互作用に基づく電子状態制御と高性能化
    田中優実, セラミックス協会第 33 回秋季シンポジウム, 2020

  10. Device Applications of One-Dimensional Van der Waals Hetero-Nanotubes
    S. Maruyama, 2020 Virtual MRS Fall Meeting & Exhibit, online, (2020), F.NM03.07.01.

    他10件

著書

  1. 工学へのアプローチ 量子力学
    山本貴博, 裳華房,2020年 11月.

  2. 触媒の劣化対策、長寿命化とその調整技術,第11章 第2節:白金クラスター担持アルミナ触媒の創製と酸化触媒性能の評価
    根岸雄一, 川脇徳久, 技術情報協会, 510-516 (2020).

  3. 触媒の劣化対策、長寿命化とその調整技術,第11章 第1節:溶液中の合金クラスターの動的挙動
    根岸雄一, 川脇徳久, 技術情報協会, 505-509 (2020).

  4. 新訂版 環境発電ハンドブック2021, 第3編 環境発電の材料~IoT時代に向けて~, 第1章 振動発電, 第5節 圧電ポリマー
    中嶋宇史, 株式会社エヌ・ティー・エス, 4 pages, 2021.

  5. ポストグラフェン材料の創製と用途開発最前線,第3章・単層遷移金属ダイカルコゲナイドにおける光物性とバレー物性
    小鍋哲, 株式会社エヌ・ティー・エス,pp29-37,2020.

  6. Concepts and Design of Materials Nanoarchitectonics, ch. Atomic-scale characterization of the platinum nanoparticles deposited on C60 fullerene nanowhiskers and related carbon nanomaterials
    K. Miyazawa, M. Yoshitake, Y. Tanaka, Royal Society of Chemistry (UK), 2021.

    他1件

特許

  1. ライブイベント演出補助システム
    小野新平、菊池広、井上博行、水野公平、古川博敏、中嶋宇史、岸本孝幸,特願2020-175147(2020.10.19).

  2. 熱電変換モジュール
    内田秀樹、中嶋宇史、元祐昌廣、山本貴博,特願2021-062105(2021.3.31).

受賞

  1. 第5回分子科学国際学術賞, 分子科学会, 2020
    根岸雄一

  2. 優秀テーマ賞, 新学術領域「革新的光-物質変換」第一回若手セミナー, 2020
    片岡祐紀(根岸研究室,M2)

  3. 学生ポスター賞奨励賞, 光機能材料研究会第25回シンポジウム
    川地正将(根岸研究室,M1)

  4. 学生ポスター賞奨励賞, 光機能材料研究会第25回シンポジウム
    小崎周平(根岸研究室,M2)

  5. 優秀ポスター発表賞, CSJ化学フェスタ2020
    海老名彩乃(根岸研究室,M2)

  6. 優秀ポスター発表賞, CSJ化学フェスタ2020
    鈴木太陽(根岸研究室,M2)

  7. 優秀ポスター発表賞, CSJ化学フェスタ2020
    岩松侑輝(根岸研究室,M1)

  8. オンライン優秀講演賞, 第71回コロイドおよび界面化学討論会, 2020
    川脇徳久(根岸研究室,助教)

  9. オンライン優秀講演賞, 第71回コロイドおよび界面化学討論会, 2020
    川地正将(根岸研究室,M1)

  10. 第29回日本金属学会・日本鉄鋼協会 奨学, 2020
    吉成朝子(小嗣研究室,B4)

  11. 第33回日本放射光学会年会放射光科学合同シンポジウム 学生賞, 2020
    西尾直(小嗣研究室)

2019年度

学術論文

  1. HRTEM-EELS cross-sectional characterization of HOPG substrate with platinum nanoparticles deposited using a coaxial arc plasma gun
    K. Miyazawa, T. Nagai, K. Kimoto, M. Yoshitake, Y. Tanaka, 101, 107623.1-6 (2020.1) (査読有).

  2. HRTEM-EELS cross-sectional structural analyses of the glassy carbon substrate irradiated by platinum ions using a coaxial arc plasma gun
    K. Miyazawa, T. Nagai, K. Kimoto, M. Yoshitake, Y. Tanaka, Surface and Interface Analysis, pp.1-11 (2019.12) DOI: 10.1002/sia.6716 (査読有).

  3. Determination of absolute number of graphene layers on nickel substr ate with scanning Auger microprobe
    M. Shima, H. Kato,K. Shihommatsu, Y. Homma, Appl. Phys. Exp, 13, 015502, 2019. (査読有).

  4. A Review of Applications Using Mixed Materials of Cellulose, Nanocellulose and Carbon Nanotubes
    Daisuke Miyashiro, Ryo Hamano,Kazuo Umemura, Nanomaterials, 10, 2, 186, DOI: 10.3390/nano10020186(査読有).

  5. Various responses of single-walled carbon nanotubes with differing chirality: a suggestion for biosensing
    Kazuo Umemura, Yu Sato, Yu Ishibashi, Masahito Ito, Yoshikazu Homma, Journal of Near Infrared Spectroscopy, 28(1), 51–56, (2020) (査読有).

  6. Interactions of Secondary DNA and Initial DNA on Single-Walled Carbon Nanotube Surfaces Studied by Photoluminescence, Atomic Force Microscopy, and Electrophoresis
    Reona Toyofuku, Shusuke Ohura, Masahiro Ito, Yoshikazu Homma, Kazuo Umemura, Journal of Nanomaterials, Vol. 2019, Article ID 2875439, 8 pages, (2019年) (査読有).

  7. Quantitative Detection of Disappearance of Antioxidant Ability of Catechin by Near-Infrared Absorption and Near-Infrared Photoluminescence Spectra of Single-Walled Carbon Nanotubes
    Kazuo Umemura, Yu Ishibashi, Masahiro Ito, Yoshikazu Homma, ACS Omega, 2019, 4 (4), 7750–7758 (2019), DOI: 10.1021/acsomega.9b00767 (査読有).

  8. Determination of Absolute Number of Graphene Layers on Nickel Substrate with Scanning Auger Microprobe
    Masahide Shima, Hiroki Kato, Kota Shihommatsu, and Yoshikazu Homma, Appl. Phys. Express 13, 015502, 2020(査読有).

  9. Chirality dependence of electron-phonon matrix elements in semiconducting single-walled carbon nanotubes
    Takumi Inaba and Yoshikazu Homma,AIP Advances, 9, 045124(2019)(査読有).

  10. Experimental assignment of phonon symmetry of G+ and G- peaks from single-walled carbon nanotubes
    Yuichiro Tanaka, Takashi Kato, Kazuki Yoshino, Shohei Chiashi and Yoshikazu Homma,Appl. Phys. Express, 12, 055009 (2019)(査読有).

  11. Solving the Thermoelectric Trade-Off Problem with Metallic Carbon Nanotubes, Yota Ichinose
    Akari Yoshida, Kanako Horiuchi, Kengo Fukuhara, Natsumi Komatsu, Weilu Gao, Yohei Yomogida, Manaho Matsubara, Takahiro Yamamoto, Junichiro Kono and Kazuhiro Yanagi,Nano Letters 19, 7370-7376, 2019 (査読有).

  12. Environment-friendly paper-based flexible pressure sensors with carbon nanotubes and liquid metals
    R. Matsukawa, D. Kobayashi, H. Mitsui, and T. Ikuno,Appl. Phys. Express, 13, 027001 (2020)(査読有).

  13. Random stick network analysis of electronic transport in carbon nanotube thin films
    M. Tsukuda, K. Ishizeki, K. Takashima, T. Yamamoto,Appl. Phys. Express 12 055006-1 - 055006-4(2019). (査読有).

    他69件

招待講演

  1. Atomic-scale characterization of nanocarbons for hydrogen energy application using high-resolution transmission electron microscopy
    K. Miyazawa and Y. Tanaka, 3rd World Chemistry Conference and Exhibition (WCCE-2019) (2019.6.13-15) Brussels, Belgium

  2. Microscopic studies of bioconjugates of nanocarbons
    Kazuo Umemura, ICAMM2019, Beihang University, Beijing, China, 29th May to 31th May, 2019

  3. Characterization of Phase of Water Confined in Nanospace
    Yoshikazu Homma and Shohei Chiashi, 12th International Symposium on Atomic Level Characterizations for New Materials and Devices '19 (ALC' 19), Kyoto, October 23, 2019

  4. 4. Water Adsorption and Desorption on Single and Suspended Single‐walled Carbon Nanotubes by Spectroscopy
    Shohei Chiashi and Yoshikazu Homma, International Conference on the Science and Application of Nanotubes and Low-Dimensional Materials, Würzburg, Germany, July 23, 2019

    他30件

著書

  1. サーマルデバイス 新素材・新技術による熱の高度制御と高効率利用,第7章・熱電デバイス,第12節,排熱を利用した環境低負荷熱電材料・モジュール・システム
    飯田努,塩尻大士,阿武宏明, 株式会社エヌ・ティー・エス,pp. 346-356, 2019. (ISBN978-4-86043-602-5).

  2. 次世代熱電変換材料・モジュールの開発 −熱電発電の黎明−
    松原愛帆山本貴博, (株)シーエムシー出版, pp103-111,2019.

    他8件

特許

  1. 発電デバイス
    小澤宜裕,松下規由起,加納一彦,大塚宏基,枝野悠介,田中優実,特願2020-32538 (2020.2.28).

  2. 移動体動線検出システム
    中嶋宇史橋爪洋一郎,岡村総一郎,岸朔矢,岸本孝幸,小林三昭,栗原一行,川端一司,林寛子,特願2019-154736(2019.8.27).

    他4件

受賞

  1. 物質・デバイス共同研究賞,物質・デバイス領域共同研究拠点,2019
    根岸雄一

  2. 日本表面真空学会 技術賞,超ミクロンスケール系に適用可能な 新しい量子輸送シミュレーション手法の開発,2019年10月29日
    石関圭輔, 笹岡健二,小鍋 哲,相馬聡文,山本貴博

    他16件

2018年度

学術論文

  1. Confinement Effect of Sub-nanometer Difference on Melting Point of Ice-Nanotubes Measured by Photoluminescence Spectroscopy
    S. Chiashi, Y. Saito, T. Kato,S. Konabe, S. Okada, T.Yamamoto, and Y. Homma, ACS Nano, 13, 1177-1182, 2019(査読有).

  2. Confinement Effect of Sub-Nanometer Difference on Melting Point of Ice-Nanotubes Measured by Photoluminescence Spectroscopy
    S. Chiashi, Y. Saito, T. Kato, S. Konabe, S. Okada, T. Yamamoto, Y. Homma,ACS Nano, 19, 1177-1182 (2019). (査読有)

  3. Effects of Chirality and Defect Density on the Intermediate Frequency Raman Modes of Individually Suspended Single-Walled Carbon Nanotubes
    T. Inaba, Y. Tanaka, S. Konabe, and Y. Homma, J. Phys. Chem. C, 122, 9184-9190 (2018)(査読有)

  4. Temperature Distribution and Thermal Conductivity Measurements of Chirality-assigned Single-walled Carbon Nanotubes by Photoluminescence Imaging Spectroscopy
    K. Yoshino, T. Kato, Y. Saito, J. Shitaba, and T. Hanashima, K. Nagano, S. Chiashi, Y. Homma,ACS Omega, 3, 4352-4356 (2018). (査読有)

  5. Quantum decoherence in electronic current flowing through carbon nanotubes induced by thermal atomic vibrations
    K. Ishizeki, K. Sasaoka, S. Konabe, S. Souma and T. Yamamoto, J. Appl. Phys. 57, 065102 (2018). (査読有)

  6. Variation in characteristics of graphene nanoribbon field-effect transistors caused by edge disorder: Computational simulation of atomistic device
    Kengo Takashima, Kenji Sasaoka, S. Konabe and Takahiro Yamamoto, Appl. Phys. Express 11, 095102 (2018). (査読有)

  7. Bipolar thermoelectric effects in semiconducting carbon nanotubes: Description in terms of one-dimensional Dirac electronse
    Takahiro Yamamoto and Hidetoshi Fukuyama, J. Phys. Soc. Jpn. 87, 114710 (2018). (査読有)

  8. A light-driven flying balloon composed of carbon nanotube freestanding films
    T. Ikuno, K. Takahashi, D. Kobayashi, H. Mitsui, S. Kato, and S. Fujii, Appl. Phys. Express,12 pp 047002,2019 (査読有)

  9. Evaluation of Thin Film Surface Shape as a Function of Dispersant Concentration in Carbon Nanotube Thin Film Fabrication via the Electrospray Method
    Yong-il Kim, Eiichi Nishikawa and Yasuyuki Watanabe, e-Journal of Surface Science and Nanotechnology, Vol. 16 pp 302-305, (2018)(査読有)

  10. Production of Carbon Nanotubes by an Underwater Arc Discharge Method Using a Metal Cathode
    Yong-il Kim, Eiichi Nishikawa and Yasuyuki Watanabe,e-Journal of Surface Science and Nanotechnology, Vol. 16 pp 343-346, 2018(査読有)

  11. Carbon Nanotube Synthesis and Dispersion Using Arc Discharge in Foam Made with a Surfactant
    Yong-il Kim, Eiichi Nishikawa and Yasuyuki Watanabe,e-Journal of Surface Science and Nanotechnology, Vol. 16 pp 382-386, 2018 (査読有)

  12. Interactions of Secondary DNA and Initial DNA on Single-Walled Carbon Nanotube Surfaces Studied by Photoluminescence, Atomic Force Microscopy, and Electrophoresis
    R. Toyofuku, S. Ohura, M. Ito, Y. Homma, and K. Umemura, J. Nanomaterials, 2019, Article ID 2875439, (2019)(査読有)

  13. Differences in the response of the near-infrared absorbance spectra of single-walled carbon nanotubes; Effects of chirality and wrapping polymers
    Yuji Matsukawa, Shusuke Ohura, Kazuo Umemura, Colloids and Surfaces B: Biointerfaces, 172, 684-689 (2018)(査読有)

  14. A fundamental study on photoluminescence modulation from DNA-wrapped single-walled carbon nanotubes
    Shusuke Oura, Masahiro Ito, Yoshikazu Homma, Kazuo Umemura, European Biophysics Journal with Biophysics Letters, 47, 523-530, (2018)(査読有)

  15. A convenient method of attaching fluorescent dyes on single-walled carbon nanotubes pre-wrapped with DNA molecules
    Akihiro Tomura, K. Umemura, Anal.Bio., 547, 1-6 (2018)(査読有)

  16. Monitoring the antioxidant effects of catechin using single-walled carbon nanotubes: comparative analysis by near-infrared adsorption and near-infrared photoluminescence
    Y. Ishibashi, M. Ito, Y. Homma, K. Umemura, Colloids and Surfaces B: Biointerfaces, 161, 139-146(2018) (査読有)

  17. In-plane Thermoelectric Properties of Nano-TiS2/CNT/PEDOT−PSS Hybrid Films
    K. Okamoto and H. Anno, IOP Conf. Series: Journal of Physics: Conf. Series 1052 (2018) 012130. (査読有) 

  18. Electrostatic Properties of Graphene Edges for Electron Emission under an External Electric Field
    Y. Gao and S. Okada, Appl. Phys. Lett. 112, 163105 (2018)(査読有)

  19. Energetics and electronic structure of triangular hexagonal boron nitride nanoflake
    Y. Gao and S. Okada, Appl. Phys. Lett. 112, 163105 (2018)(査読有)

  20. Investigation of surface potentials in reduced graphene oxide flake by Kelvin probe force microscopy
    R. Negishi, K. Takashima and Y. Kobayashi, Jpn. J. Appl. Phys., 57 06HD02-1-4 (2018)(査読有)

  21. Secondary electron emission from multi-layer graphene: A time-dependent first-principles study
    Y. Ueda, Y. Suzuki, and K. Watanabe, Appl. Phys. Express, 11, 105101-1-105101-4 (2018)(査読有)

  22. HRTEM structural characterization of the Pt nanoparticles loaded on carbon black particles using focused ion beam milling
    K. Miyazawa, S. Shimomura, M. Yoshitake, Y. Tanaka,Materials Letters, 237, pp. 96-100, 2019(査読有)

  23. Structure and facet characterization of platinum nanoparticles loaded on carbon black particles
    K. Miyazawa, S. Shimomura, M. Yoshitake, Y. Tanaka,International Journal of Engineering Research and Applications (IJERA), 8[11], pp. 13-21, 2018(査読有)

  24. Thiolate-Protected Trimetallic Au∼20Ag∼4Pd and Au∼20Ag∼4Pt Alloy Clusters with Controlled Chemical Composition and Metal Positions
    S. Hossain, T. Ono, M. Yoshioka, G. Hu, M. Hosoi, Z. Chen, L. V. Nair, Y. Niihori, W. Kurashige, D. Jiang, Y. Negishi, J. Phys. Chem. Lett., 9巻 pp 2590-2594, 2018(査読有)

  25. Evidence for line width and carrier screening effects on excitonic valley relaxation in 2D semiconductors
    Y. Miyauchi, S. Konabe, et al., Nat. Commun. 9, 2598 (2018)(査読有)

    他64報

著書

  1. Optical Properties of Carbon Nanotubes
    S. Chiashi, Y. Homma, S. Maruyama, World Scientific Publishing, Singapore, Chapter 9, 2019.

  2. Chapter 9, Raman Spectroscopy for Practical Characterization of Single-Wall Carbon Nanotubes in Various Environments in Handbook of Carbon Nanomaterials Vol. 10: Optical Properties of Carbon Nanotubes
    Shohei Chiashi, Yoshikazu Homma, and Shigeo Maruyama, World Scientific Publishing, 726ページ(49-73),2018.

  3. Synthesis and Characterization of Metal-Diaminobipyridine Complexes as Low-Cost Co-catalysts for Photo-Sensitized Hydrogen Evolution, Tarun Chand Vagvala
    Takashi Ooyabe, Munetoshi Sakai, Yusuke Funasako, Makoto Inokuchi, Wataru Kurashige, Yuichi Negishi, Vit Kalousek, Keita Ikeue, Elsevier, pp821-829, 2018.

    他3件

招待講演

  1. Conjugates of DNA and carbon nanotubes for biosensing, International Conference on Nano-structured Materials and Devices(ICNSMD-2018)
    Kazuo Umemura, University of Delhi, 2018年12月17日

  2. Biological applications of carbon nanotubes wrapped with organic molecules, 5th International Congress on Microscopy & Spectroscopy (INTERM 2018)
    Kazuo Umemura, Oludeniz, Mugla, Turkey, 2018年4月25日

  3. HRTEM Analyses of Strained Platinum Nanoparticles Deposited on Carbon Substrates Using CAPD
    K. Miyazawa, M. Yoshitake, Y. Tanaka, BIT’s 8th Annual Word Congress of Nano Science & Tchnology, Potsdam, Germany, 2018

  4. Precise Synthesis and Application of Metal Clusters
    Yuichi Negishi, Special Seminar in University of KAUST, サウジアラビア, 2018

  5. High-Performance Liquid Chromatography Mass Sectrometry of Thiolate-Protected Metal Clusters
    Yuichi Negishi, Internal Conference of Mass Spectrometry and Proteomics, アイルランド, 2018

  6. Precise Synthesis, Functionalization, and Application of Thiolate-Protected Gold Clusters
    Yuichi Negishi, Special Seminar in University of Liverpool, イングランド, 2018

  7. Precise Synthesis, Functionalization, and Application of Thiolate-Protected Gold Clusters
    Yuichi Negishi, Gold 2018, フランス, 2018

  8. Precise Synthesis of Platinum and Alloy Clusters and Elucidation of Their Structures
    Yuichi Negishi, Special Seminar in Department of Chemical Engineering of National University of Singapore, シンガポール, 2018

  9. High-Performance Liquid Chromatography Mass Sectrometry of Thiolate-Protected Metal Clusters
    Yuichi Negishi, 6th International Conference and Exhibition on Advances in Chromatography & HPLC Techniques, スペイン, 2018

  10. Activation of Water-Splliting Photocatalysts Using Thiolate-Protected Metal Clusters as Co-catalysts
    Yuichi Negishi, International Conference on Emerging Advanced Nanomaterials 2018, オーストラリア, 2018

  11. Precise Synthesis of Platinum and Alloy Clusters and Elucidation of Their Structures
    Yuichi Negishi, MRS 2018 Fall Meeting, アメリカ, 2018

  12. Precise Synthesis of Platinum and Alloy Clusters and Elucidation of Their Structures
    Yuichi Negishi, Special Seminar in Department of Chemistry of Georgetown University, アメリカ, 2018

  13. Precise Synthesis and Application of Metal Clusters
    Yuichi Negishi, Special Seminar in Department of Chemistry and Biochemistry of University of Mississippi, アメリカ, 2018

  14. Precise Synthesis and Application of Metal Clusters
    Yuichi Negishi, International Conference on Advanced Chemistry and Catalysis "Advanced Chemistry and Catalysis Engineering", アメリカ, 2018

  15. Precise Synthesis and Application of Small Gold and Alloy Clusters
    Yuichi Negishi, Global Chemical Enginnering and Chemistry Conference Expo, スペイン, 2019

    他40件

特許

  1. ナノ繊維自立膜及びその製造方法
    生野孝, 畑山亮, 特願2019-003810,2019.

  2. 圧電性ポリアミドフィルムの製造方法
    岡村総一郎, 中嶋宇史, 橋爪洋一郎, 齋藤修平, 中塚祐太朗, 特願2019-064148(2019.3.28)

  3. 振動発電型電気防食装置及び振動発電型電気防食装置の設置方法
    佐藤政博, 中村考宏, 皆川浩, 中嶋宇史, 特願2018-16114(2018.8.30)

  4. 無線センサ装置及び状態推定システム
    中嶋宇史, 特願2018-125320(2018.6.29)

  5. 圧電型発電装置及びその製造方法
    関口哲志, 佐々木敏夫, 笹川健太, 中嶋宇史, 特願2018-3881(2018.1.13)

受賞

  1. American Chemical Society Poster Award, 19th International Conference on the Science and Application of Nanotubes and Low-Dimensional Materials, 2018/7/20.
    D. Kobayashi(生野研究室・M2)

  2. Poster Award,第66回応用物理学会春季学術講演会,2019/3/9.
    畑山亮(生野研究室・B4)

  3. 女性躍進賞, 電気化学会, 2018.
    田中優実

  4. 若手ポスター賞, 日本分析化学会, 2018.
    橋本彩加, 渡邊誠一郎, 新堀佳紀, 根岸雄一

  5. Distinguished Award 2018, IUPAC 国際会議, 2018.
    Yuichi Negishi

  6. 優秀ポスター発表賞, 日本化学会, 2018.
    橋本彩加, 渡邊誠一郎, 新堀佳紀, 藏重亘, 根岸雄一

  7. 第54回フラーレン・カーボンナノチューブ・グラフェン総合シンポジウム 若手奨励賞, 2018年9月12日.
    佃将明(山本研究室,修士課程2年)

    他20件


2017年度

学術論文

  1. Raman imaging of millimeter-long carbon nanotubes grown by a gas flow method
    K. Kihara, A. Ishitani, T. Koyama, M. Fukasawa, T. Inaba, M. Shimizu, and Y. Homma, Appl. Phys. Express 10, 025103 (2017).

  2. Conjugates between photosystem I and a carbon nanotube for a photoresponse device
    D. Nii, M. Miyachi, Y. Shimada, Y. Nozawa, M. Ito, Y. Homma, S. Ikehira, H. Nishihara, and T. Tomo,Photosynthesis Research, 133, 155 (2017).

  3. Mechanism of electron excitation and emission from a nanoribbon under pulsed laser irradiation: time-dependent first-principles study
    S. Miyauchi and K. Watanabe, J. Phys. Soc. Jpn. 86, 035003 (2017).

  4. First-principles study of the dielectric functions of carbon nanotubes with adsorbedwater
    D. Iwasaki, Y. Suzuki, and K. Watanabe, Appl. Phys. Express 10, 045101 (2017).

  5. Electron transmission through bilayer graphene: A time-dependent first-principles study
    H. Miyauchi, Y. Ueda, Y. Suzuki, and K. Watanabe, Phys. Rev. B 95, 125425 (2017).

  6. Adsorption of DNA binding proteins to functionalized carbon nanotube surfaces with and without DNA wrapping Yu Ishibashi, Shusuke Oura, and Kazuo Umemura. European Biophysics Journal with Biophysics Letters, 46, 541 (2017).

  7. Super-micron-scale Atomistic Simulation for Electronic Transport with Atomic Vibration: Unified Approach from Quantum to Classical Transport Keisuke Ishizeki, Kenji Sasaoka, Satoru Konabe, Satofumi Souma and Takahiro Yamamoto, Phys. Rev. B 96, 035428 (2017).

  8. Transport phenomena of electrons at the carbon nanotube interface with molecular adsorption
    Takuya Kokabu, Kengo Takashima, Shuhei Inoue, Yukihiko Matsumura and Takahiro Yamamoto, J. Appl. Phys. 122, 015308 (2017).

  9. Optimization of Thermoelectric Power Factor and Deviation from Mott's formula of Edge-disordered Semiconducting Graphene Nanoribbons
    Tetsumi Izawa, Kengo Takashima, Satoru Konabe and Takahiro Yamamoto, Synthetic Metals 225, 98 (2017).

  10. Modulations of thermal properties of graphene by strain-induced phonon engineering
    Kento Tada, Takashi Funatani, Satoru Konabe, Kenji Sasaoka, Matsuto Ogawa, Satofumi Souma and Takahiro Yamamoto, Jpn. J. Appl. Phys. 56, 025102 (2017).

  11. Higgs Mode in a Trapped Superfluid Fermi Gas
    J. Tokimoto, S. Tsuchiya, and T. Nikuni, Proceedings of the 2016 International Conference on Quantum Fluids and Solids, J. Low Temp. Phys. 187, 765 (2017).

招待講演

  1. ナノカーボン制限空間に存在する水の構造と物性の評価
    本間芳和, 顕微ナノ材料科学研究会・放射光表面科学研究部会 合同シンポジウム, 東京理科大学葛飾キャンパス(東京, 2017)

  2. ナノ空間・表面での水の特異な構造と物性の計算科学的探査
    山本貴博,本間直樹,紅谷篤史,本間芳和, 顕微ナノ材料科学研究会・放射光表面科学研究部会 合同シンポジウム, 東京理科大学葛飾キャンパス(東京, 2017)

  3. カーボンナノチューブに内包された水の相転移の計測
    本間芳和,ナノトライボロジー研究センター開設シンポジウム,電気通信大学 (東京, 2017)

  4. 走査電子顕微鏡によるナノカーボン材料形成過程のその場観察
    本間芳和,電気化学会第84回大会, 首都大学東京 (東京, 2017)

  5. Transmission electron microscopy analysis of platinum catalysts deposited on various nanocarbon supports
    K. Miyazawa, M. Yoshitake, Y. Tanaka, BIT’s 5th Annual Conferene of Analytix-2017, (Fukuoka, 2017)

特許

  1. 蛍光検出方法及び蛍光検出装置
    梅村和夫, 政池知子, 佐藤玄実, 横田龍一, 国内優先出願, №2017-044186,2017

  2. 白金ナノ粒子と炭素系担体との複合体、及びその製造方法
    田中優実, 宮澤薫一, 吉武優, 国内優先出願, No.2017-37661, 2017

  3. 熱電物性測定装置及び熱電物性測定方法
    中嶋宇史, 山本貴博, 福山秀敏、橋爪洋一郎, 特願 2017- 142754, 2017

受賞

  1. 2017年電気通信大学ナノトライボロジー研究センター開設シンポジウム 優秀発表賞
    紅谷篤史

  2. 2017年第41回(2016年秋季)応用物理学会講演奨励賞
    加藤高士

  3. 2017年ナノカーボン研究部門ワークショップ2017「ナノカーボンの科学と工学の新展開」 優秀講演賞
    石関圭輔

  4. 2017年ナノカーボン研究部門ワークショップ2017「ナノカーボンの科学と工学の新展開」 優秀講演賞
    髙島健悟

  5. 2017年日本表面科学会 第27回奨励賞
    伊藤雅浩


  6. 2017年東京理科大学 学生表彰(TUS Award 2017)
    井澤哲美

  7. 2017年第2 6回日本MRS年次大会 奨励賞
    石関圭輔



2016年度

学術論文

  1. Strain effect of cellulose-wrapped single-walled carbon nanotubes measured by photoluminescence and Raman scattering spectroscopy
    M. Ito, H. Yajima, and Y. Homma, Jpn. J. Appl. Phys. 55, 075101 (2016).

  2. Artifact-Metrics Using Photoluminescence Imaging of Single-Walled Carbon Nanotube Composite Paper
    M. Ito, Y. Homma, M. Akiba, and T. Oya, e-J. Surf. Sci. Nanotech. 14, 185 (2016).

  3. Quantum dynamics of charge state in silicon field evaporation
    E.P. Silaeva, K. Uchida, and K. Watanabe, AIP Advances 6, 085202 (2016).

  4. Quantum dynamics of secondary electron emission from nanographene
    Y. Ueda, Y. Suzuki, and K. Watanabe, Phys. Rev. B 94, 035403 (2016).

  5. Positron States at Li- and O-adsorbed Fe(001) Ferromagnetic Surfaces Studied by Two-Component Density Functional Theory
    S. Hagiwara and K. Watanabe, J. Phys. Soc. Jpn. 85, 114703 (2016).

  6. Bohmian mechanics in the exact factorization of electron-nuclear wave functions
    Y. Suzuki and K. Watanabe, Phys. Rev. A 94, 032517 (2016).

  7. Electrostatic-field-enhanced photoexfoliation of bilayer benzene: A first-principles study
    K. Uchida, E. P. Silaeva, and K. Watanabe, Appl. Phys. Express 9, 065101 (2016).

  8. First-Principles Study on Positron States at Li-Adsorbed Al(100) Surfaces: Effect of Electron-Positron Correlation
    S. Hagiwara, Y. Suzuki, and K. Watanabe, Defect and Diffusion Forum 373, 46 (2016).

  9. Probe Microscopic Studies of DNA Molecules on Carbon Nanotubes
    Kazuo Umemura, Katsuki Izumi, and Shusuke Oura. Nanomaterials, 6, 180 (2016).

  10. Un-uniform binding of single-stranded DNA binding proteins on to hybrids of single-stranded DNA and single-walled carbon nanotubes studied by atomic force microscopy in air and in liquid
    Kazuo Umemura, Kei Ishizaka, Daisuke Nii, and Katsuki Izumi. Applied Surface Science, 388, 381 (2016).

  11. Protein adsorption on hybrids of thermoresponsive polymers and single-walled carbon nanotubes
    Kazuo Umemura, Katsuki Izumi, Yoshikazu Kumashiro, Shusuke Oura, and Teruo Okano. International Journal of Polymer Science, 10, 1155 (2016).

  12. Removal of excess polymer from a suspension containing hybrids of thermoresponsive polymer and carbon nanotubes using aggregation phenomena
    Katsuki Izumi, Yoshikazu Kumashiro, Shusuke Oura, Teruo Okano, and Kazuo Umemura. Japanese Journal of Applied Physics 55, 095003 (2016).

  13. Physisorption of DNA molecules on chemically modified single-walled carbon nanotubes with and without sonication
    Kazuo Umemura, Yu Ishibashi, and Shusuke Oura. European Biophysics Journal with Biophysics Letters, 45, 483 (2016).

  14. Atomic Force Microscopy of DNA-wrapped Single-walled Carbon Nanotubes in Aqueous Solution
    Takuya Hayashida and Kazuo Umemura. Colloids and Surfaces B: Biointerfaces, 143, 526 (2016).

  15. Preparation of Thermoresponsive Nanostructured Surfaces for Tissue Engineering
    M. Sakuma, Y. Kumashiro, M. Nakayam, N. Tanaka, Y. Haraguchi, K. Umemura, T. Shimizu, M. Yamato, T. Okano, J. of Visualized Experiments, 109, e53465 (2016).

  16. Atomic Force Microscopy of DNA-wrapped Single-walled Carbon Nanotubes in Aqueous Solution
    T. Hayashida and K. Umemura. Colloids and Surfaces B: Biointerfaces, 143, 526 (2016).

  17. Atomic Force Microscopy of DNA-wrapped Single-walled Carbon Nanotubes in Aqueous Solution
    T. Hayashida and K. Umemura. Colloids and Surfaces B: Biointerfaces, 143, 526 (2016).

  18. Improvement of thermoelectric performance of single-wall carbon nanotubes by heavy doping: Effect of multiplicity of one-dimensional bands
    Daisuke Hayashi, Yusuke Nakai, Haruka Kyakuno, Takahiro Yamamoto, Yasumitsu Miyata, Kazuhiro Yanagi, and Yutaka Maniwa, Appl. Phys. Express 9 125103 (2016).

  19. Edge-disorder effects on electric transport in metallic graphene nanoribbons at finite temperature
    Kengo Takashima, Satoru Konabe, and Takahiro Yamamoto, Surf. Interface Anal. 48, 1214 (2016).

  20. Edge-Disorder-Induced Optimization on Thermoelectric Performance of Finite-Length Graphene Nanoribbons
    Tetsumi Izawa, Kengo Takashima, and Takahiro Yamamoto, Surf. Interface Anal. 48, 1210 (2016).

  21. Thermoelectric properties of single-wall carbon nanotube films: Effects of diameter and wet environment
    Daisuke Hayashi, Tomohiro Ueda, Yusuke Nakai, Haruka Kyakuno, Yasumitsu Miyata, Takahiro Yamamoto, Takeshi Saito, Kenji Hata, Yutaka Maniwa, Appl. Phys. Express 9 025102 (2016).

  22. Carrier Localization Length in Edge-Disordered Graphene Nanoribbons with Sub-100 nm Length
    K. Takashima, S. Konabe, and T. Yamamoto, J. Appl. Phys.119, 024301 (2016).

  23. Magnetic Properties of Graphene Quantum Dots Embedded in h-BN Sheet
    Mina Maruyama and Susumu Okada, The Journal of Physical Chemistry C 120, 1293 (2016).

  24. Gate-Tunable Dirac Point of Molecular Doped Graphene
    Pablo Solis-Fernandez, Susumu Okada, Tohru Sato, Masaharu Tsuji, and Hiroki Ago ACS Nano 10, 2930 (2016).

  25. Influence of fullerene cages on energetics of dipole moment of encapsulated water molecule
    Jun-ya Sorimachi and Susumu Okada, Japanese Journal of Applied Physics 55, 04EP02 (2016).

  26. Anomalous electrostatic potential properties in CNT thin films under a weak external electric field
    U Ishiyama, Nguyen Thanh Cuong, and Susumu Okada, Applied Physics Express 9, 045101 (2016).

  27. Geometric and electronic structures of corannulene polymers: Ultra narrow graphene ribbons with corrugation and topological defects
    Kohei Narita and Susumu Okada, Chemical Physics Letters 650, 76 (2016).

  28. Effect of structural deformation on carrier accumulation in semiconducting carbon nanotubes under an external electric field
    Akiko Hasegawa and Susumu Okada, Japanese Journal of Applied Physics 55, 045101 (2016).

  29. Energetics and electronic structure of tubular Si nanoscale vacancies filled by carbon nanotubes
    Taketo Kochi and Susumu Okada, Japanese Journal of Applied Physics 55, 055101 (2016).

  30. Geometric and electronic structures of one-dimenisonally polymerized coronene molecules
    Kohei Narita and Susumu Okada, Japanese Journal of Applied Physics 55, 06GF02 (2016).

  31. Influence of the Defects on the Electronic Structures of Bilayer Graphene
    K. Kishimoto and S. Okada, Surface Science 644, 18 (2016).

  32. Energetics and electronic structures of graphene nanoribbons under a lateral electric field
    A. Yamanaka and S. Okada, Carbon 96, 351 (2016).

  33. Influence of electric field on electronic states of graphene nanoribbons under a FET structure
    A. Yamanaka and S. Okada, Jpn. J. Appl. Phys., 55, 035101 (2016).

  34. Cooperon condensation and intra-valley pairing states in honeycomb Dirac systems
    S. Tsuchiya, J. Goryo, E. Arahata, and M. Sigrist, Phys. Rev. B 94, 104508 (2016).

著書

  1. カーボンナノチューブ・グラフェンの応用研究最前線
    丸山茂夫監修,SEM 観察/PL 分光, 本間芳和,119-126,エヌ・ティー・エス (2016)

  2. 基礎からの物理学
    山本貴博, 裳華房, (2016)

招待講演

  1. Interaction of Molecules with Single-Walled Carbon Nanotube Probed by Photoluminescence and Raman Spectroscopy
    Y. Homma, 229th Electrochemical Society Meeting, (San Diego, USA, 2016)

  2. Microscopic Analysis of Graphene and Carbon Nanotube Growth
    Y. Homma, 7th International Symposium on Practical Surface Analysis, (Daejeon, Korea, 2016)

  3. Tips for China-Japan collaboration in science and technology fields
    Kazuo Umemura. Forum on High-Level Modern Vocational-Education Plus Made in China 2025 and Industry 4.0, Shenzhen Technology University (Gemdale Lyatt Hotel Shen Zhen), (China, 2016)

  4. Unique responses of carbon nanotubes wrapped with biomolecules
    Kazuo Umemura. The 5rd International Conference on Nanostructures, Nanomaterials and Nanoengineering (ICNNN 2016), (Singapore, 2016)

  5. Nanoscopic study of hybrid of biomolecules and carbon nanotubes
    Kazuo Umemura. EMN Meeting on Smart and Multifunctional Material-2016, Mövenpick Hotel (Berlin, 2016)

  6. ナノ材料の非弾性電子輸送シミュレーション 〜量子輸送から古典輸送まで〜
    山本貴博, QuantumWise Japan セミナー (東京, 2016)

受賞

  1. 2016年日本物理学会 領域7 優秀ポスター賞
    石関圭輔

  2. 2016年第4回TIAナノエレクトロニクス・サマースクール奨励賞
    井澤哲美

  3. 2016年日本表面科学会 講演奨励賞
    髙島健悟

  4. 2016年日本表面科学会 関東支部 第1回講演会 学生講演奨励賞
    石関圭輔

  5. 2016年若手合同研究会「表面・界面現象の新展開:吸着・物質移動・エネルギー散逸」最優秀ポスター講演賞
    石関圭輔

  6. 2016年東京理科大学 学生表彰(TUS Award 2016)
    髙島健悟



2015年度

学術論文

  1. Atmospheric ions as the origin of photoinduced degrading of photoluminescence from a single-walled carbon nanotube
    T. Inaba and Y. Homma
    Appl. Phys. Lett. 107, 071907 (2015).

  2. The Effect of DNA Adsorption on Optical Transitions in Single Walled Carbon Nanotubes
    M. Ito, Y. Ito, D. Nii, H. Kato, K. Umemura, and Y. Homma, J. Phys. Chem. C. 119, 21141 (2015)

  3. Re-growth of single-walled carbon nanotube by hot-wall and cold-wall chemical vapor deposition
    H. Wang, C. Yamada, J. Liu, B. Liu, X. Tu, M. Zheng, C. Zhou, and Y. Homma, Carbon 95, 497 (2015).

  4. Scanning electron microscopy imaging mechanisms of chemical vapor deposition grown graphene on Cu substrate revealed by in situ observation
    H. Wang, C. Yamada, and Y. Homma, Jpn. J. Appl. Phys. 54, 050301 (2015).

  5. Energetics and dynamics of laser-assisted field evaporation: Time-dependent density functional theory simulations
    E. P. Silaeva, K. Uchida, Y. Suzuki, K. Watanabe, Phys. Rev. B 92, 155401 (2015).

  6. Nano-Saturn: Energetics of the Inclusion Process of C60 into Cyclohexabiphenylene
    S. Kigure, H. Omachi, H. Shinohara, and S. Okada, J. Phys. Chem. C 119, 8931 (2015).

  7. Influence of Defects for Carrier Injection In Carbon Nanotubes
    U Ishiyama, N. T. Cuong, and S. Okada, Jpn. J. Appl. Phys. 54, 065101 (2015).

  8. Radical Spin Interaction in One-dimensional Chain of Decamethyl C60
    K. Narita and S. Okada, Chem. Phys. Lett. 634, 129 (2015).

  9. Geometric and electronic structures of two-dimensional networks of fused C36 fullerenes
    M. Maruyama, N. Thanh Cuong, and S. Okada, J. Phys. Soc. Jpn., 84, 084706 (2015).

  10. Adsorption Effects on Radial Breathing Mode of Single-walled Carbon Nanotubes
    S. Chiashi, K. Kono, D. Matsumoto, J. Shitaba, N. Homma, A. Beniya, T. Yamamoto, and Y. Homma, Phys. Rev. B 91, 155415 (2015).

  11. Gold deposition effects on photoluminescence and raman scattering spectra of suspended single-walled carbon nanotubes
    A. Ozao, S. Chiashi, S. Watanabe, G. Yamaguchi, H. Kato, and Y. Homma, Jpn. J. Appl. Phys. 54, 055102 (2015).

  12. Biomolecular recognition ability of RecA proteins for DNA on single-walled carbon nanotubes
    S. Oura, M. Ito, D. Nii, Y. Homma, and K. Umemura, Colloids Surf. B 126,496 (2015).

  13. Hybrids of Nucleic Acids and Carbon Nanotubes for Nanobiotechnology
    K. Umemura, Nanomaterials 5, 321 (2015).

  14. Single cell analysis using a glass microchamber for studying movement fluctuations of Navicula pavillardii and Seminavis robusta diatom cells
    K. Umemura, Y. Sadoya, K. Nagao, R. Oikawa, Y. Hanada, K. Sugioka, and S. Mayama. Micron, 77, 41 (2015).

著書

  1. 第一原理シミュレーションによる新規フレキシブル熱電材料の探索
    山本貴博, 小鍋哲, 日本熱電学会誌 11, No.3, 9 (2015).

招待講演

  1. Microstructural Characterization of the C60 Fullerene Nanowhiskers Irradiated by Raman Laser Beams
    K. Miyazawa and Y. Tanaka, 第26回日本MRS年次大会, (横浜, 2016)

  2. ナノカーボン物質と水と熱
    山本貴博, 摩擦の科学研究部会 (東京, 2015)

  3. ナノカーボンフォノニクスの基礎と応用
    山本貴博, 科研費 新学術領域「ハイブリッド量子 科学」勉強会 〜フォノン物性の基礎と応用〜 (東京, 2015)

  4. Influence of Edge Roughness on Graphene Nanoribbons Field-Effect Transistors
    K. Takashima and T. Yamamoto, Energy, Materials, Nanotechnology (EMN) Bangkok Meeting (Bangkok, Thailand, 2015)

  5. 低次元ナノ構造の伝熱と熱電物性
    山本貴博, 2015年真空・表面科学合同講演会 (茨城県, 2015)

  6. 2次元原子層材料における新奇熱電物性の理論的研究
    小鍋哲, 日本物理学会 2015年秋季大会 (大阪, 2015)

  7. 原子層材料の第一原理熱電シミュレーション
    小鍋哲, 第25回日本MRS年次大会 (神奈川, 2015)

  8. Microscopic analysis of single walled carbon nanotubes wrapped with DNA molecules
    Kazuo Umemura 3rd International Multidisciplinary Microscopy and Microanalysis Congress (InterM 2015) (Mugla, Turkey, 2015)

  9. Geometric and electronic structures of nanocarbon hybrid materials
    Susumu Okada, CCTN15: Tenth International Symposium on Computational Challenges and Tools for Nanotubes (Nagoya, 2015)

  10. Interaction of water molecules with single-walled carbon nanotube
    Y. Homma, S. Chiashi, and T. Yamamoto, The International Chemical Congress of Pacific Basin Societies 2015 (Pacifichem2015) (Honolulu, 2015)

特許

  1. 半導体材料, 導電性層にキャリアを生じさせる方法, 及び熱電変換素子
    山本貴博, 中嶋宇史, 阿武宏明, 小鍋哲
    特願 2015-205044, 2015

受賞

  1. 2015年Excellent Presentation Award of ALC'15
    髙島健悟

  2. 2015年Excellent Presentation Award of ALC'15
    小鍋哲

  3. 2015年Student Award of ALC'15
    井澤哲美

  4. 2015年第3回 TIAナノエレクトロニクス・サマースクール奨励賞
    髙島健悟

  5. 2015年第12回東京理科大学特定研究助成金 研究成果報告会 優秀賞
    山本貴博

  6. 2015年日本表面科学会 講演奨励賞
    本間直樹

  7. 2015年Poster Presentation Award, The Sixteenth International Conference on the Science and Application of Nanotubes (NT15)
    千足昇平

  8. 2015年Poster Presentation Award, The Sixteenth International Conference on the Science and Application of Nanotubes (NT15)
    加藤高士

  9. 2015年Poster Presentation Award, The Sixteenth International Conference on the Science and Application of Nanotubes (NT15)
    小鍋哲



2014年度

学術論文

  1. Adsorption Effects on Radial Breathing Mode of Single-walled Carbon Nanotubes
    S. Chiashi, K. Kono, D. Matsumoto, J. Shitaba, N. Homma, A. Beniya, T. Yamamoto, and Y. Homma
    Phys. Rev. B 91, 155415 (2015).

  2. Gold deposition effects on photoluminescence and raman scattering spectra of suspended single-walled carbon nanotubes
    A. Ozao, S. Chiashi, S. Watanabe, G. Yamaguchi, H. Kato, and Y. Homma
    Jpn. J. Appl. Phys. 54, 055102 (2015).

  3. Biomolecular recognition ability of RecA proteins for DNA on single-walled carbon nanotubes
    S. Oura, M. Ito, D. Nii, Y. Homma, and K. Umemura
    Colloids Surf. B 126,496 (2015).

  4. Hybrids of Nucleic Acids and Carbon Nanotubes for Nanobiotechnology
    K. Umemura
    Nanomaterials 5, 321 (2015).

  5. Significant enhancement of the thermoelectric performance of phosphorene through the application of tensile strain
    S. Konabe and T. Yamamoto
    Phys. Express 8, 015202 (2015).

  6. Nanoplasmon Dynamics and Field Enhancement of Graphene Flakes by First-principles Simulations
    N. Yamamoto, C. Hu, S. Hagiwara and K. Watanabe
    Appl. Phys. Express 8, 045103 (2015).

  7. In situ scanning electron microscopy of graphene nucleation during segregation of carbon on polycrystalline Ni substrate
    Y. Momiuchi, K. Yamada, H. Kato, Y. Homma, H. Hibino, G. Odahara and C. Oshima
    J. Phys. D: Appl. Phys. 47, 455301 (2014).

  8. Tuning of the thermoelectric properties of one-dimensional material networks by electric double layer techniques using ionic liquids
    K. Yanagi, S. Kanda, Y. Oshima, Y. Kitamura, H. Kawai, T. Yamamoto, T. Takenobu, Y. Nakai, and Y. Maniwa
    Nano Lett. 14, 6437 (2014).

  9. Alternating current response of carbon nanotubes with randomly distributed impurities
    D. Hirai, T. Yamamoto, and S. Watanabe
    Appl. Phys. Lett. 105, 173106 (2014).

  10. Anomalous satellite inductive peaks in the ac response of defective carbon nanotubes
    D. Hirai, T. Yamamoto, and S. Watanabe
    J. Appl. Phys. 115, 174312 (2014).

  11. グラフェンとその関連物質の熱伝導と熱電物性
    山本貴博, 小鍋哲
    J. Vac. Soc. Jpn. 57, 457 (2014).

  12. Energetics and Dynamics of Laser-Assisted Field Emission from Silicene Nanoribbons: Time-Dependent First-Principles Study
    T. Higuchi, C. Hu and K. Watanabe
    e-J. Surf. Sci. Nanotech. 13, 115 (2015).

  13. Time-dependent density functional theory simulation of electron wave-packet scattering with nanoflakes
    K. Tsubonoya, C. Hu and K. Watanabe
    Phys. Rev. B 90, 035416 (2014).

  14. カーボンナノチューブへのピレン吸着:エナジェティクスとダイナミクス
    胡春平, 嶋田恵, 岡本裕司, 土方啓暢, 渡辺一之
    表面科学 35, 340 (2014).

  15. Electronic structures of carbon nanotubes with monovacancy under an electric field
    U Ishiyama, N. T. Cuong, and S. Okada
    Jpn. J. Appl. Phys, 53, 115102 (2014).

  16. An anomalous dipole-dipole arrangement of water molecules encapsulated into C60 dimer
    K. Nomura and S. Okada
    Chem. Phys. Lett., 608, 351 (2014).

  17. Spin-state tuning of decamethyl C60 by an external electric field
    K. Narita and S. Okada
    Chem. Phys. Lett., 614, 10 (2014).

  18. Electron injection into nearly free electron states of graphene nanoribbons under a lateral electric field
    A. Yamanaka and S. Okada
    Appl. Phys. Express, 7, 125103 (2014).

  19. Full-length selective removal of metallic single-walled carbon nanotubes by organic film-assisted electrical breakdown
    K. Otsuka, T. Inoue, S. Chiashi, S. Maruyama
    Nanoscale 6, 8831 (2014).

  20. Air-Stable High-Efficiency Solar Cells with Dry-Transferred Single-Walled Carbon Nanotube Films
    K. Cui, A. S. Anisimov, T. Chiba, S. Fujii, H. Kataura, A. Nasibulin, S. Chiashi, E. Kauppinen, S. Maruyama
    J. Mater. Chem. A 2, 11311 (2014).

著書

  1. Carbon Nanotube Synthesis and the Role of Catalyst
    Chapter 9 in Frontiers of Graphene and Carbon Nanotubes, Devices and Applications (Ed by K. Matsumoto)
    Y. Homma
    Springer, pp.125-129 (2015).

  2. In Situ Observation of Crystal Growth by Scanning Electron Microscopy
    Chapter 23 in Handbook of Crystal Growth, 2nd Edition (Ed by T. Nishinaga)
    Y. Homma
    Elsevier, pp.1003-1030 (2014)

招待講演

  1. カーボンナノチューブの熱伝導と熱電変換
    山本貴博
    第47回フラーレン・ナノチューブ・グラフェン総合シンポジウム(愛知県名古屋市, 2014)

  2. カーボンナノチューブのフォノン伝導と熱電物性
    山本貴博
    第51回伝熱シンポジウム(静岡県浜松市, 2014)

  3. 時間依存密度汎関数法のナノスケール電子放射と電子回折への応用
    渡辺一之,樋口大志,打木大介,上田純裕,坪野谷,胡春平
    物性研究所計算物質科学研究センター第4回シンポジュウム&物性研究所スーパーコンピュータ共同利用報告会(東京大学柏キャンパス 物性研究所,2014)

  4. Higgs mode in a superfluid of Dirac fermions
    土屋俊二
    Internacional Workshop “Higgs modes in Condensed Matter and Quantum Gases”(Yukawa Institute of Theoretical Physics, Kyoto, Japan, 2014)

特許

  1. 黒リン単原子膜、熱電材料、及び熱電変換素子
    山本貴博
    特願2014-209402,2014

受賞

  1. 2014年 日本表面科学会講演奨励賞(スチューデント部門)
    本間直樹

  2. 2014年 日本表面科学会奨励賞
    入田賢

  3. 2014 M&M Student Poster Award, Microscopy Society of America
    入田賢

  4. 平成26年 度東京理科大学学生表彰(TUS Award 2014)
    加藤哲平



2013年度

学術論文

  1. Photoluminescence Measurements and Molecular Dynamics Simulations of Water Adsorption on the Hydrophobic Surface of a Carbon Nanotube in Water Vapor
    Y. Homma, S. Chiashi, T. Yamamoto, K. Kono, D. Matsumoto, J. Shitaba, and S. Sato
    Phys. Rev. Lett. 110, 57402 (2013).

  2. Application of Single-Walled Carbon Nanotube to the Probe of Scanning Tunneling Microscopy
    M. Irita, Y. Homma, and T. Miura
    e-J. Surf. Sci. Nanotech. 11, 105-108 (2013).

  3. Intense photoluminescence from dried double-stranded DNA and single-walled carbon nanotube hybrid
    M. Ito, T. Kobayashi, Y. Ito, T. Hayashida, D. Nii, K. Umemura, and Y. Homma
    App. Phys. Lett. 104, 043102 (2014).

  4. Water Encapsulation Control in Individual Single-Walled Carbon Nanotubes by Laser Irradiation
    S. Chiashi, T. Hanashima, R. Mitobe, K. Nagatsu, T. Yamamoto, and Y. Homma
    J. Phys. Chem. Lett. 5, 408–412 (2014).

  5. Gold Nanoparticles as the Catalyst of Single-Walled Carbon Nanotube Synthesis
    Y. Homma
    Catalysts 2014, 4, 38-48 (2014).

  6. Fluctuation in the surface morphology of DNA-wrapped carbon nanotubes studied by continuous cross-sectional analysis of atomic force microscopy image
    K. Umemura, T. Hirata, T. Hayashida, and D. Nii
    Review of Applied Physics 2, 51-54 (2013).

  7. Kelvin Probe Force Microscopy of Single-Walled Carbon Nanotubes Modified with DNA or Polyethylene Glycol
    T. Hayashida, T. Kawashima, D. Nii, K. Ozasa, and K. Umemura
    Chemistry Letters, 42, 666-668 (2013).

  8. Controlling the adsorption and desorption of double-stranded DNA on functionalized carbon nanotube surface
    D. Nii, T. Hayashida, and K. Umemura
    Colloids and Surfaces B: Biointerfaces 106, 234–239 (2013).

  9. A new method for removing dispersed carbon nanotubes from aqueous solution by nanoporous biosilica (frustule)
    M. Sakuma, S. Hori, T. Hayashida, S. Mayama, and K. Umemura
    Journal of Porous Materials 20, 961-966 (2013).

  10. Atomic force microscopy imaging of dialyzed single-walled carbon nanotubes dispersed with sodium dodecyl sulfate
    S. Hirayama, T. Hayashida, and K. Umemura
    Journal of Porous Materials 20, 961-966, (2013).

  11. Structures of Hybrids of DNA and Carbon Nanotubes Observed by Atomic Force Microscopy in Air and in Liquids
    K. Umemura, T. Hayashida, D. Nii, Y. Ymaguchi, and T. Kawashima
    Journal of Multifunctional Composites 2, 67-70 (2014).

  12. Optical Properties of Boron Nitride and Graphene Nanoribbons: A Time-Dependent Density Functional Theory Simulation
    S. Hagiwara, H. Goto, C. Hu, and K. Watanabe
    JPS. Conf. Proc. 1, 012072 (2014).

  13. Patterns of Field Electron Emission from Carbon Nanotubes: Ab initio Simulations by Time-Dependent Density Functional Theory
    C. Hu, R. Mori, and K. Watanabe
    JPS Conf. Proc. 1, 012067 (2014).

  14. Conductance fluctuation of edge-disordered graphene nanoribbon: Crossover from diffusive transport to Anderson localization
    K. Takashima and T. Yamamoto
    Appl. Phys. Lett. 104, 093105 (2014).

  15. Giant Seebeck Coefficient in Semiconducting Single-Wall Carbon Nanotube Film
    Y. Nakai, K. Honda, K. Yanagi, H. Kataura, T. Kato, T. Yamamoto and Y. Maniwa
    Appl. Phys. Express 7, 025103 (2014).

  16. Wave Packet Dynamics Simulation on Electronic Transport in Carbon Nanotubes with Randomly Distributed Impurities
    Y. Takada and T. Yamamoto
    Jpn. J. Appl. Phys. 52, 06GD07 (2013).

  17. Nanostructural Effects on Thermoelectric Power of Graphene Nanoribbons
    T. Kato, S. Usui, and T. Yamamoto
    Jpn. J. Appl. Phys. 52, 06GD05 (2013).

  18. Effect of Gas Pressure on the Density of Horizontally Aligned Single-Walled Carbon Nanotubes Grown on Quartz Substrates
    T. Inoue, D. Hasegawa, S. Badar, S. Aikawa, S. Chiashi, S. Maruyama
    J. Phys. Chem. C, 117, 11804-11810 (2013).

  19. Investigation of Non-Segregation Graphene Growth on Ni via Isotope- Labeled Alcohol Catalytic Chemical Vapor Deposition
    P. Zhao, B. Hou, X. Chen, S. Kim, S. Chiashi, E. Einarssona, S. Maruyama
    Nanoscale 5, 6530-6537 (2013).

招待講演

  1. Investigation of Alumina Effect on Growing Vertically Alligned Carbon Nanotubes
    Y. Homma and H. Kato
    6th Guadalupe Workshop for the Nucleation and Growth of Single-Wall Carbon Nanotubes (Bandera,Texas, USA, 2013)

  2. Suspended Single-Walled Carbon Nanotubes as the Probe for Nano-Surface Science
    Y. Homma and S. Chiashi
    9th International Symposium on Atomic Level Characterizations for New Materials and Devices ’13 (Hawaii, USA, 2013)

  3. ナノカーボンの形態と物性
    本間芳和
    日本表面科学会第79回表面科学研究会,平成25年度中部表面科学シンポジウム(名古屋, 2014)

  4. “疎水性”カーボンナノチューブ外表面に形成される水和層
    本間芳和千足昇平山本貴博
    日本学術振興会 水の先進理工学 第183委員会第20回研究会(東京,2014).

  5. カーボンナノチューブの水との相互作用
    本間芳和千足昇平山本貴博
    第46回フラーレン・ナノチューブ・グラフェン総合シンポジウム(東京, 2014).

  6. Nanoscopic characterization of DNA molecules adsorbed on carbon nanotubes
    K. Umemura
    2014 EMN Spring Meeting, Las Vegas (USA, 2014).

  7. ナノテクを用いた一分子・一細胞観察~いつもより余計に回っております
    梅村和夫
    福岡大学研究推進部主催研究会(福岡, 2013).

  8. カーボンナノ材料の熱電物性シミュレーション
    山本貴博
    日本熱電学会第17回研究会「新しい概念・設計思想に基づく熱電機能の発現・性能向上へのアプローチ」(東京, 2014)

  9. Simulation Study on Thermoelectric Properties of Carbon Nanostructures
    山本貴博
    ACSIN-12 & ICSPM21 (つくば市, 2013)

  10. グラフェンの熱物性と熱電材料としての可能性
    山本貴博
    2013年真空・表面科学合同講演会 合同シンポジウム「グラフェン応用デバイスの新展開」(つくば市, 2013)

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