Research keywords (2):
Electrochemistry
, Secondary batteries
Research theme for competitive and other funds (3):
2023 - 2025 高容量次世代二次電池のための固体電解質界面形成に向けた電解液設計指針の確立
2024 - 2025 電析法を用いた表面特性制御による高活性電極触媒の精密設計
2020 - 2023 リチウム空気電池の充放電サイクル特性に及ぼす正極表面化学修飾の効果検証
Papers (15):
Kiho Nishioka, Hayato Fujimoto, Mamoru Tobisu, Shuji Nakanishi. Expanding the Design Flexibility of Electrolyte Solvents for Li-O2 Secondary Batteries by Incorporating Fluorine Groups. ACS Applied Energy Materials. 2024
Kiho Nishioka, Mizuki Tanaka, Terumi Goto, Ronja Haas, Anja Henss, Shota Azuma, Morihiro Saito, Shoichi Matsuda, Wei Yu, Hirotomo Nishihara, et al. Fluorinated Amide-Based Electrolytes Induce a Sustained Low-Charging Voltage Plateau under Conditions Verifying the Feasibility of Achieving 500 Wh kg<sup>-1</sup> Class Li-O<sub>2</sub> Batteries. ACS Applied Materials & Interfaces. 2024
Kiho Nishioka, Timo Weintraut, Steffen Schröder, Anja Henss, Shuji Nakanishi. True Location of Insulating Byproducts in Discharge Deposits in Li-O2 Batteries. ACS Applied Energy Materials. 2024
Wei Yu, Takeharu Yoshii, Alex Aziz, Rui Tang, Zheng-Ze Pan, Kazutoshi Inoue, Motoko Kotani, Hideki Tanaka, Eva Scholtzová, Daniel Tunega, et al. Edge-Site-Free and Topological-Defect-Rich Carbon Cathode for High-Performance Lithium-Oxygen Batteries. Advanced Science. 2023
Kiho Nishioka, Morihiro Saito, Manai Ono, Shoichi Matsuda, Shuji Nakanishi. N, N-Dimethylethanesulfonamide as an Electrolyte Solvent Stable for the Positive Electrode Reaction of Aprotic Li-O2 Batteries. ACS Applied Energy Materials. 2022. 5. 4. 4404-4412