Research field (7):
Catalytic processes and resource chemistry
, Energy chemistry
, Green/sustainable/environmental chemistry
, Analytical chemistry
, Nanostructure chemistry
, Structural and functional materials
, Composite materials and interfaces
Research theme for competitive and other funds (2):
2018 - 2021 Continuous and stepwise CO2 electrochemical reduction for production hydrocarbons with suppression of hydrogen generation
Papers (15):
Fumiaki Amano, Ayami Shintani, Tatsuya Sakakura, Yoshiyuki Takatsuji, Tetsuya Haruyama. Photoelectrochemical C-H activation of methane to methyl radical at room temperature. Catalysis Science and Technology. 2023
Yoshiyuki Takatsuji, Masayuki Morimoto, Yukimasa Nakatsuru, Tetsuya Haruyama. Anodized Zn electrode for formate selectivity during the electrochemical reduction of CO2 at low applied potential. Electrochemistry Communications. 2022. 138. 107281-107281
Kaede Okita, Ryota Yamasaki, Yohei Nakamura, Tatsuya Sakakura, Aki Kawano, Yoshiyuki Takatsuji, Tetsuya Haruyama, Yoshie Yoshioka, Wataru Ariyoshi. Quick and environmentally friendly sterilization process of dental instruments by radical vapor reactor. Process Biochemistry. 2022. 113. 22-26
Masayuki Morimoto, Namiki Fujita, Yoshiyuki Takatsuji, Tetsuya Haruyama. Decreasing the Overpotential for Formate Production in Electrochemical CO2 Reduction Achieved by Anodized Sn Electrode. Electrocatalysis. 2022. 13. 1. 72-80
Yuto Tsuchida, Naoya Murakami, Tatsuya Sakakura, Yoshiyuki Takatsuji, Tetsuya Haruyama. Drastically Increase in Atomic Nitrogen Production Depending on the Dielectric Constant of Beads Filled in the Discharge Space. ACS Omega. 2021. 6. 44. 29759-29764