Rchr
J-GLOBAL ID:201801018767108952
Update date: Jun. 27, 2024
Taminato Sou
タミナト ソウ | Taminato Sou
Affiliation and department:
Homepage URL (1):
http://www.energy.chem.mie-u.ac.jp
Research field (2):
Inorganic compounds/materials chemistry
, Inorganic and coordination chemistry
Research keywords (7):
固体電池
, リチウム金属負極
, ポリマー電解質
, Inorganic chemistry
, Secondary batteries
, Solid oxide fuel cell
, epitaxial thin film
Research theme for competitive and other funds (13):
- 2024 - 2027 二相混合物質の相界面制御による高容量・高可逆な正極活物質構造の創出
- 2023 - 2025 気相法による高エネルギー密度蓄電池正極反応場の創製
- 2022 - 2025 新規二相混合活物質の合成と蓄電池電極反応の検討
- 2023 - 2024 正極/固体電解質界面の構築による高電圧正極反応の制御
- 2021 - 2024 Development of all-solid-state thin-film secondary batteries and high energy density cathode materials for all-solid-state lithium secondary batteries
- 2020 - 2023 Development of acidic aqueous lithium-air battery
- 2021 - 2022 異種活物質材料界面の活用に基づく蓄電池電極反応の開拓
- 2021 - 2022 全固体薄膜二次電池の創製と高電圧正極反応制御指針の提案
- 2020 - 2022 新規高エネルギー密度水系リチウム金属電池の実用化研究
- 2020 - 2022 新規Li金属複合負極の創製と高エネルギー密度水溶液系Li空気二次電池への応用
- 2019 - 2021 Control of High Capacity Cathode Reaction of Lithium Secondary Batteries by Construction of Solid Electrolyte/Electrode Interface
- 2020 - 2021 Li金属負極保護層としての高イオン導電性有機・無機複合固体電解質の創製
- 2019 - 2020 電極表面領域の活用によるリチウム二次電池高容量正極反応の制御
Show all
Papers (65):
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Yasuaki Matsuda, Jun Nakajima, Yuta Inoue, Akihisa Ishikawa, Naoya Ueta, Daisuke Mori, Sou Taminato, Nobuyuki Imanishi, Takashi Fukushima, Shinya Higashimoto. Tunnel-Structured Phosphate Exhibiting High Proton Conductivity and Thermal Stability over a Wide Intermediate Temperature Range. Inorganic chemistry. 2024. 63. 18. 8018-8025
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Ayaka Abe, Daisuke Mori, Zhichao Wang, Sou Taminato, Yasuo Takeda, Osamu Yamamoto, Nobuyuki Imanishi. Flexible High Lithium-Ion Conducting PEO-Based Solid Polymer Electrolyte with Liquid Plasticizers for High Performance Solid-State Lithium Batteries. ChemistryOpen. 2024. e202400041
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Sou Taminato, Akino Tsuka, Kento Sobue, Daisuke Mori, Yasuo Takeda, Osamu Yamamoto, Nobuyuki Imanishi. Stabilization of the Interface between a PEO-Based Lithium Solid Polymer Electrolyte and a 4-Volt Class Cathode, LiCoO2, by the Addition of LiPF6 as a Lithium Salt. Batteries. 2024. 10. 4
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Ryosuke Goto, Sou Taminato, Daisuke Mori, Nobuyuki Imanishi. Synthesis and electrochemical properties of Li5+xFe1-xMnxO4 with an antifluorite-type structure as a lithium battery cathode. Chemistry Letters. 2024. 53. 4
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Daisuke Mori, Miho Sato, Sou Taminato, Nobuyuki Imanishi, Kota Suzuki, Masaaki Hirayama. Grain boundary modification of Li3PO4 and Li3BO3 in garnet-type solid electrolyte for suppressing Li dendrite growth. Journal of the Ceramic Society of Japan. 2023. 131. 10. 690-695
more...
MISC (5):
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丹羽栄貴, 村上美和, 田港聡, 今西誠之, 森大輔. Ionic conduction mechanism of new fluoride-ion conductor K2BiF5-related materials. 電気化学会大会講演要旨集(CD-ROM). 2021. 88th
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田港聡, 平山雅章, 菅野了次. ナノサイズ化によるリチウムイオン電池の大容量化. 中性子産業利用推進協議会 季報 四季. 2018. 40. 7-8
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田港聡, 菅野了次, 米村雅雄, 神山崇, 森一広, 福永俊晴. 充放電しているリチウム電池の内部挙動の解析に成功. 中性子産業利用推進協議会 季報 四季. 2017. 34. 5-6
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M. Yonemura, T. Kamiyama, K. Mori, T. Fukunaga, Y. ishikawa, S. Torii, R. Tomiyasu, K. Kino, T. Naka, M. Morishima, et al. Development of an Advanced Special Neutron Powder Diffractometer under Extreme Environment for Materials. 2016. 2014. 90-91
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充放電しているリチウム電池の内部挙動の解析-中性子線を用い非破壊かつリアルタイム観測により実現. Nihon Kessho Gakkaishi. 2016. 58. s11-s11
Books (1):
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Advanced Materials for Battery Separators
Elsevier 2024 ISBN:9780128175071
Education (1):
- - 2013 Tokyo Institute of Technology
Professional career (1):
Work history (3):
- 2018/03 - 現在 Mie University
- 2017/03 - 2018/02 産業技術総合研究所
- 2013/04 - 2017/02 Tokyo Institute of Technology
Association Membership(s) (2):
The Ceramic Society of Japan
, THE ELECTROCHEMICAL SOCIETY OF JAPAN
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