Rchr
J-GLOBAL ID:200901082788424617   Update date: Nov. 19, 2024

Otsuka Hideyuki

オオツカ ヒデユキ | Otsuka Hideyuki
Affiliation and department:
Job title: Professor
Homepage URL  (1): http://www.otsuka-cap.mac.titech.ac.jp
Research field  (3): Polymer chemistry ,  Polymer materials ,  Functional solid-state chemistry
Research keywords  (6): Functional Materials ,  Polymer Synthesis ,  Polymer Reaction ,  高分子材料 ,  高分子合成 ,  高分子反応
Research theme for competitive and other funds  (22):
  • 2021 - 2026 Development of molecular probes capable of detecting polymer radicals for the scientific elucidation of polymer chain scission
  • 2019 - 2022 Development of Innovative Chemical Modification Method of Amine-cured Epoxy Resin Using B-N Bond
  • 2017 - 2021 Repeatable Mechanochromic Polymers Based on Dynamic Covalent Chemistry
  • 2016 - 2018 Development of Mechanoluminescent Nanofiber sheets
  • 2014 - 2017 Development of Mechanoresponsive Reactive Polymers with Reversibly Cleavable Chains
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Papers (256):
  • Wichean Khawdas, Yuto Kubota, Takumi Yamamoto, Hideyuki Otsuka, Hiroshi Ito. Visualization of Polymer Chain Scission during Melt Processing Using a Mechanochromic Probe. Macromolecules. 2024
  • Gota Tomono, Hirogi Yokochi, Akira Takahashi, Daisuke Aoki, Hideyuki Otsuka. Direct and Reversible Transformations between Intermolecular Polymer Networks and Single-Chain Nanoparticles Based on Thermally Dissociable Bis(hindered amino)disulfide Linkages. Macromolecules. 2024. 57. 13. 6362-6369
  • Takumi Yamamoto, Akira Takahashi, Hideyuki Otsuka. Mechanochromic polymers based on radical-type dynamic covalent chemistry. Bulletin of the Chemical Society of Japan. 2024
  • Takuma Watabe, Hideyuki Otsuka. Enhancing the Reactivity of Mechanically Responsive Units via Macromolecular Design. Macromolecules. 2024
  • Takumi Yamamoto, Daisuke Aoki, Koichiro Mikami, Hideyuki Otsuka. Diverse metastable diarylacetonitrile radicals generated by polymer mechanochemistry. RSC Mechanochemistry. 2024
more...
MISC (9):
  • 大塚 英幸, 後関 頼太, 今任 景一. 動的共有結合ポリマーの開発 : 自在に構造変換できる高分子を目指して (動的共有結合化学 : 共有結合形成を可逆的に制御する). 化学と教育. 2016. 64. 3. 98-101
  • 今任 景一, 大塚 英幸. 完全自己修復性をもつ高分子ゲルの設計 (特集 自己修復材料の機能と用途). 接着の技術 = Adhesion technology, Japan. 2015. 35. 1. 16-22
  • Self-Healing of Polymers Based on Dynamic Covalent Chemistry. 2015. 54. 3. 221-227
  • Autonomously Self-Healing Polymeric Materials with Dynamic Covalent Bonds. 2014. 43. 12. 13-20
  • Scrambling reactions of polymer main chains. Fine chemicals. 2010. 39. 9. 5-13
more...
Education (4):
  • - 1996 Kyushu University
  • - 1996 Kyushu University Graduate School, Division of Engineering
  • - 1992 Kyushu University Faculty of Engineering
  • - 1992 Kyushu University School of Engineering
Professional career (1):
  • Ph.D (Kyushu University)
Work history (8):
  • 2013 - 現在 Tokyo Institute of Technology
  • 2000 - 2013 Kyushu University Associate Professor
  • 1997 - 2000 Tokyo Institute of Technology,
  • 1997 - 2000 Tokyo Institute of Technology
  • 1995 - 1997 Japan Society for the Promotion of Science,
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Committee career (2):
  • 2019/03 - 2021/02 日本化学会 高分子ディビジョン主査
  • 2006 - 2008 文部科学省研究振興局学術調査官(併任)
Awards (6):
  • 2013 - 日本ゴム協会 第4回ブリヂストンソフトマテリアルフロンティア賞
  • 2012 - 高分子学会 Wiley Award
  • 2011 - 日本化学会 BCSJ論文賞
  • 2010 - 有機合成化学協会 第22回有機合成化学協会研究企画賞
  • 2008 - 日本ゴム協会 第55回優秀論文賞
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Association Membership(s) (8):
American Chemical Society ,  繊維学会 ,  American Chemical Society ,  有機合成化学協会 ,  高分子学会 ,  日本化学会 ,  THE SOCIETY OF RUBBER SCIENCE AND TECHNOLOGY, JAPAN ,  THE ADHESION SOCIETY OF JAPAN
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