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J-GLOBAL ID:201901016013799430   Update date: Mar. 06, 2024

Kitta Mitsunori

Kitta Mitsunori
Affiliation and department:
Research field  (1): Thin-film surfaces and interfaces
Research theme for competitive and other funds  (7):
  • 2022 - 2025 オペランド電気化学 SPR 分光法の深化によるアルカリ金属析出の初期過程の探求
  • 2022 - 2025 新物質スピネル型ナトリウムチタン酸化物の学理:構造安定化の真理と新規合成法の探求
  • 2018 - 2023 Artificial Photosynthesis by Sodium Tantalate Photocatalysts: Multinational Collaboration in Fundamental Science
  • 2017 - 2020 Atomic-scale characterization on lithium-ion battery electrodes by using vacuum electrochemical AFM
  • 2014 - 2017 Surface and Interface studies of the electrode materials for Li-ion batteries from the basis of the atomic level characterization.
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Papers (89):
  • Riki Kataoka, Noboru Taguchi, Mitsunori Kitta, Nobuhiko Takeichi, Reina Utsumi, Hiroyuki Saitoh, Masashi Nozaki, Atsunori Kamegawa. The origin of the highly crystallized face-centered cubic YH3 high-pressure phase when quenched to ambient condition. MATERIALS TODAY COMMUNICATIONS. 2022. 31
  • Kohei Tada, Mitsunori Kitta, Shingo Tanaka. CO Oxidation Activity of Au on Spinel Titanate Supports: Improvement of Catalytic Activity via Alkali Cation Substitution from Li4Ti5O12 to Na3LiTi5O12. Chemistry Letters. 2022. 51. 2. 157-161
  • Riki Kataoka, Toshikatsu Kojima, Mitsunori Kitta, Akihiko Machida. Sodium insertion and de-insertion mechanism of spinel-type sodium titanium oxide studied by in situ XRD. Journal of Alloys and Compounds. 2022. 890. 161763-161763
  • Kitta, M., Yoshii, K., Murai, K., Sano, H. Optical Study of the Surface Film Formed during Li-Metal Deposition and Dissolution Investigated by Surface Plasmon Resonance Spectroscopy. ACS Applied Materials and Interfaces. 2022. 14. 24
  • Kohei Tada, Mitsunori Kitta, Shingo Tanaka. Properties of spinel-type Ti-Li-M composite oxides (M = Li, Na, Cu, and Ag) predicted by density functional theory. Physical Chemistry Chemical Physics. 2022. 24. 45. 28055-28068
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MISC (14):
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