Rchr
J-GLOBAL ID:201901018881676917   Update date: Mar. 02, 2024

Ikezawa Atsunori

Ikezawa Atsunori
Affiliation and department:
Homepage URL  (1): http://www.echem.titech.ac.jp/~arai/index.html
Research field  (2): Electronic devices and equipment ,  Energy chemistry
Research keywords  (2): Secondary Batteries ,  Electrochemistry
Research theme for competitive and other funds  (4):
  • 2023 - 2025 Kinetic analysis of carbon corrosion reactions in alkaline electrolyte solutions using a newly developed DEMS system
  • 2022 - 2025 特異なアニオン欠損面を持つ新規ペロブスカイトの開拓
  • 2022 - 2024 Construction of reference electrodes and all-solid-state four-electrode cells for the investigation of lithium-ion transfers at solid|solid interfaces
  • 2021 - 2023 二次電池用亜鉛極の長寿命化を目的とした充放電反応速度論および電解液設計指針の構築
Papers (31):
  • Kota Nakahara, Atsunori Ikezawa, Takeyoshi Okajima, Hajime Arai. Enhanced Oxygen Reduction Activity of Platinum Micropore. ChemElectroChem. 2024
  • Chihiro YAMAMOTO, Atsunori IKEZAWA, Takeyoshi OKAJIMA, Hajime ARAI. Phase Transition Kinetics of LiFePO4 Biphasic Systems in Aqueous and Non-aqueous Electrolytes. Electrochemistry. 2024
  • Atsunori Ikezawa, Juri Kida, Kohei Miyazaki, Hajime Arai. Quantitative DEMS analysis of CO2 evolution reactions in alkaline electrolyte solutions. Electrochemistry Communications. 2024
  • Tetsuya Omiya, Atsunori Ikezawa, Keita Takahashi, Keiichi Saito, Masao Yonemura, Takashi Saito, Takashi Kamiyama, Hajime Arai. Combination of float charging and occasional discharging to cause serious LIB degradation analyzed by operando neutron diffraction. Energy Advances. 2024
  • Kota Nakahara, Atsunori Ikezawa, Hajime Arai. Enhanced Kinetics of Oxygen Reduction Reactions in Alkaline Solutions inside Mesoporous Electrodes. ECS Meeting Abstracts. 2023
more...
Professional career (1):
  • 博士(工学) (京都大学)
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