Research keywords (4):
spectroelectrochemistry
, 分光電気化学計測
, 電子伝達
, 光誘起電荷分離
Research theme for competitive and other funds (2):
2013 - 2016 光合成水分解触媒マンガンクラスターの酸化還元特性の解明
2009 - 2012 光合成細菌の電荷分離反応に関わる機能分子のエネルギー準位相関解明
Papers (35):
Y. Kato, H. Watanabe, T. Noguchi. ATR-FTIR spectroelectrochemical study on the mechanism of the pH dependence of the redox potential of the non-heme iron in photosystem II. Biochemistry. 2021. 60. 2170-2178
K. Kawahara, N. Inoue-Kashino, K. Namie, Y. Kato, T. Tomo, Y. Shibata, Y. Kashino, T. Noguchi. A gold nanoparticle conjugate with photosystem I and photosystem II for development of a biohybrid water-splitting photocatalyst. Biomed. Spectrosc. Imaging. 2020. 9. 73-81
S. Kishi, K. Saito, Y. Kato, H. Ishikita. Redox potentials of ubiquinone, menaquinone, phylloquinone, and plastoquinone in aqueous solution. Photosynth. Res. 2017. 134. 193-200
FTIR study on the water oxidation reaction in photosystem II microcrystals
(2019)
FTIR study on the redox property of the primary quinone QA in photosystem II
(8th International Conference Photosynthesis and Hydrogen Energy Research for Sustainability -2017 2017)
Redox potential of the secondary quinone electron acceptor QB in photosystem II: Mechanism of electron-transfer regulation
(The 17th International Congress on Photosynthesis Research 2016)
Redox potential of the secondary quinone electron acceptor QB in photosystem II: Mechanism of electron-transfer regulation
(Photosynthetic Electron and Proton Transport in Plants and Algae; Operation, Regulation and Function; Sattelite meeting of the 17th ICPR 2016)
Redox potential of the secondary quinone electron acceptor QB in photosystem II as revealed by FTIR spectroelectrochemistry
(International Meeting Photosynthesis Research for Sustainability -2015 2015)