Research field (6):
Recycling systems and society
, Environmental materials/recycling technology
, Biophysics
, Electronic devices and equipment
, Energy chemistry
, Semiconductors, optical and atomic physics
Research keywords (8):
水素生成
, 生体高分子
, 燃料電池
, 超プロトン伝導体
, 燃料電池電解質
, Dielectrics
, semiconduetor
, Nuclear Magnetic Resonance
Research theme for competitive and other funds (9):
2024 - 2027 光合成の水素生成を用いた新規光合成燃料電池の最適動作条件決定と建材への応用
2018 - 2021 Creation of novel direct alchol fuel cell using biopolymer chitin and Determination of its optimal operating condition
2011 - 2012 生体由来物質の薄膜化による新しい燃料電池電解質の開発
2005 - 2007 0次元水素結合型超プロトン伝導体を用いた燃料電池の創製と空白温度領域の充填
2003 - 2005 DNAを用いた高配向導電性薄膜の作成と機能素子の創製
燃料電池電解質(超プロトン伝導体)に関する研究
核磁気共鳴法による分子性導体の研究
NMR study on Insulation -Semiconductor phase transition
Study on the Molecular Conductor using NMR method
Show all
Papers (101):
Yusuke Takahashi, Hitoki Semizo, Yasumitsu Matsuo. Determination of optimal operating conditions for bioelectrolyte fuel cells using ADH as anode catalyst and solidification of fuel. Chemical Physics Impact. 2024. 9
Yusuke Takahashi, Hitoki Semizo, Yasumitsu Matsuo. Power generation characteristics and optimum alcohol concentration in bio-direct alcohol fuel cell using chitin family electrolyte. Chemical Physics Impact. 2024. 8
Hitoki Semizo, Ryusei Yabu, Haruka Kai, Yamato Ohgishi, Yasumitsu Matsuo. Hydration and proton conductivity in the Gly-Pro crystal. Chemical Physics. 2023. 573
Yuki Hirota, Taiki Tominaga, Takashi Kawabata, Yukinobu Kawakita, Yasumitsu Matsuo. Differences in water dynamics between the hydrated chitin and hydrated chitosan determined by Quasi-Elastic Neutron Scattering. Bioengineering. 2023. 10. 622
瀬溝人生, 松尾康光, 川上比奈子. Development of Transdisciplinary-fundamental Experiment Connected by Photo-biofuel Cell -Integrated and Comprehensive Experiment Applied to any Fields of Science and Technology-. 工学教育(Web). 2022. 70. 4. 83-87
瀬溝人生, 松尾康光. Carrier generation in “chitin” using enzyme. 摂南大学融合科学研究所論文集(Web). 2022. 7. 1