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Physical Chemistry Chemical Physics : PCCP|May 22, 2015
Identification of intrinsic catalytic activity for electrochemical reduction of water molecules to generate hydrogenTatsuya Shinagawa, Kazuhiro TakanabeChemsuschem|December 17, 2016
Towards Versatile and Sustainable Hydrogen Production through Electrocatalytic Water Splitting: Electrolyte EngineeringTatsuya Shinagawa, Kazuhiro TakanabeChemsuschem|August 3, 2022
Electrolyte Engineering for Oxygen Evolution Reaction Over Non-Noble Metal Electrodes Achieving High Current Density in the Presence of Chloride IonHiroki Komiya, Tatsuya Shinagawa, Kazuhiro TakanabeAngewandte Chemie (International Ed. in English)|March 28, 2017
Boosting the Performance of the Nickel Anode in the Oxygen Evolution Reaction by Simple Electrochemical ActivationTatsuya Shinagawa, Marcus Tze-Kiat Ng, Kazuhiro TakanabeChemsuschem|August 29, 2017
Electrolyte Engineering towards Efficient Water Splitting at Mild pHTatsuya Shinagawa, Marcus Tze-Kiat Ng, Kazuhiro TakanabeChemsuschem|January 22, 2021
Delivering the Full Potential of Oxygen Evolving Electrocatalyst by Conditioning Electrolytes at Near-Neutral pHTakeshi Nishimoto, Tatsuya Shinagawa, Takahiro Naito, et al.ACS Applied Materials & Interfaces|November 5, 2016
Generation of Transparent Oxygen Evolution Electrode Consisting of Regularly Ordered Nanoparticles from Self-Assembly Cobalt Phthalocyanine as a TemplateAhmed Ziani, Tatsuya Shinagawa, Liga Stegenburga, et al.Chemsuschem|December 15, 2021
Gas Crossover Regulation by Porosity-Controlled Glass Sheet Achieves Pure Hydrogen Production by Buffered Water Electrolysis at Neutral pHTakahiro Naito, Tatsuya Shinagawa, Takeshi Nishimoto, et al.Chemsuschem|September 3, 2020
Water Electrolysis in Saturated Phosphate Buffer at Neutral pHTakahiro Naito, Tatsuya Shinagawa, Takeshi Nishimoto, et al.Chemical Science|June 24, 2021
Determination and perturbation of the electronic potentials of solid catalysts for innovative catalysisXingyu Qi, Tatsuya Shinagawa, Fuminao Kishimoto, et al.Pageof 2