Rchr
J-GLOBAL ID:201801004771002017   Update date: Sep. 02, 2025

Kobayashi Yoshihiro

コバヤシ ヨシヒロ | Kobayashi Yoshihiro
Affiliation and department:
Homepage URL  (1): https://www-ap.eng.osaka-u.ac.jp/nanomaterial/index.html
Research field  (3): Applied materials ,  Thin-film surfaces and interfaces ,  Nanomaterials
Research keywords  (5): carbon nanotube ,  graphene ,  nanocarbon ,  crystal growth ,  Surface Science
Research theme for competitive and other funds  (13):
  • 2025 - 2027 スペーサ挿入した多層グラフェン層間での電気二重層形成による均一フェルミ準位制御
  • 2024 - 2027 反応駆動力を制御した2段階構造修復による低欠陥カーボンナノチューブ形成
  • 2021 - 2024 3次元積層グラフェンの層間カップリング抑制による新規ナノ炭素構造体創成
  • 2019 - 2021 グラフェンの乱層構造に起因する特異物性の研究
  • 2017 - 2020 Synthesis of novel nanocarbon materials by ultrahigh temperature process under reactive environment
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Papers (153):
  • Yuanjia Liu, Taiki Inoue, Yoshihiro Kobayashi. Crossover between Kite Growth and Vibrational Bridging in Pillar-Assisted Controlled Formation of Carbon Nanotube Networks toward Nanoscale Interconnections. ACS Applied Nano Materials. 2025
  • Man Shen, Taiki Inoue, Mengyue Wang, Yuanjia Liu, Yoshihiro Kobayashi. Efficient Defect Healing of Single-Walled Carbon Nanotubes through C2H2-Assisted Multiple-Cycle Treatment with Air Exposure. ACS Applied Materials & Interfaces. 2025
  • Kaipeng Rong, Ryosuke Noro, Hayato Nishigaki, Mingda Ding, Yao Yao, Taiki Inoue, Ryuji Katayama, Yoshihiro Kobayashi, Kazunari Matsuda, Shinichiro Mouri. Far-Reaching Remote Doping for Monolayer MoS2 Using a Ferroelectric Substrate: Unveiling the Impact of h-BN Spacer Thickness. ACS Applied Electronic Materials. 2024
  • Mingda Ding, Taiki Inoue, John Isaac Enriquez, Harry Handoko Halim, Yui Ogawa, Yoshitaka Taniyasu, Yuji Hamamoto, Yoshitada Morikawa, Yoshihiro Kobayashi. Experimental and theoretical investigation of nanodiamond insertion on the interlayer interaction in multilayer stacking graphene. Carbon. 2024. 119464-119464
  • Yao Yao, Taiki Inoue, Makoto Takamura, Yoshitaka Taniyasu, Yoshihiro Kobayashi. Suppression of Nucleation Density in Twisted Graphene Domains Grown on Graphene/SiC Template by Sequential Thermal Process. Crystal Growth & Design. 2024. 24. 4. 1682-1689
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MISC (17):
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Books (1):
  • Quantum hybrid electronics and materials
    Springer 2022 ISBN:9789811912009
Association Membership(s) (3):
フラーレン・ナノチューブ・グラフェン学会 ,  日本表面真空学会 ,  THE JAPAN SOCIETY OF APPLIED PHYSICS
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