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ZhaoGuowei 研究業績一覧 (30件)
論文
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Guowei Zhao,
Kota Suzuki,
Toyoki Okumura,
Tomonari Takeuchi,
Masaaki Hirayama,
Ryoji Kanno.
Extending the Frontiers of Lithium-Ion Conducting Oxides: Development of Multicomponent Materials with γ-Li3PO4-Type Structures,
Chemistry of Materials,
American Chemical Society,
Volume 34,
Number 9,
Page 3948–3959,
Apr. 2022.
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Guowei ZHAO,
Kota SUZUKI,
Masaaki HIRAYAMA,
Ryoji Kanno.
Synthesis and Lithium-ion Conductivity of Sr(La1−xLi3x)ScO4 with a K2NiF4 Structure,
Electrochemistry,
J-STAGE,
Volume 90,
Issue 1,
Page 017005,
Jan. 2022.
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Shogo Wakazaki,
Qiumin Liu,
Randy Jalem,
Takumi Nishikubo,
Yuki Sakai,
Naoki Matsui,
Guowei Zhao,
Kota Suzuki,
Kei Shigematsu,
Takafumi Yamamoto,
Ryoji Kanno,
Hena Das,
Yoshitaka Tateyama,
Masaki Azuma.
High-Pressure Synthesis and Lithium-Ion Conduction of Li4OBr2 Derivatives with a Layered Inverse-Perovskite Structure,
Chemistry of Materials 2021, 33, 23,
Nov. 2021.
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Guowei Zhao,
Kota Suzuk,
Masaaki Hirayama,
Ryoji Kanno.
Syntheses and Characterization of Novel Perovskite-Type LaScO3-Based Lithium Ionic Conductors,
Molecules,
Vol. 26,
Issue 2,
Jan. 2021.
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Guowei Zhao,
Kota Suzuki,
Tomoaki Seki,
Xueying Sun,
Masaaki Hirayama,
Ryoji Kanno.
High lithium ionic conductivity of γ-Li3PO4-type solid electrolytes in Li4GeO4−Li4SiO4–Li3VO4 quasi-ternary system,
Journal of Solid State Chemistry,
Vol. 292,
Dec. 2020.
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Kota Suzuki,
Kosei Ohura,
Atsuto Seko,
Yudai Iwamizu,
Guowei Zhao,
Masaaki Hirayama,
Isao Tanaka,
Ryoji Kanno.
Fast material search of lithium ion conducting oxides using a recommender system,
Journal of Materials Chemistry A,
Vol. 8,
Issue 23,
pp. 11582-11588,
June 2020.
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Guowei Zhao,
Kota Suzuki,
Masao Yonemura,
Masaaki Hirayama,
Ryoji Kanno.
Enhancing Fast Lithium Ion Conduction in Li4GeO4–Li3PO4 Solid Electrolytes,
ACS Appl. Energy Mater,
Vol. 2,
No. 9,
pp. 6608-6615,
Sept. 2019.
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Guowei Zhao,
Muhammad Iqbal,
Kota Suzuki,
Masaaki Hirayama,
Ryoji Kanno.
Synthesis, Crystal Structure, and the Ionic Conductivity of New Lithium Ion Conductors, M-Doped LiScO2 (M = Zr, Nb, Ta),
MATERIALS TRANSACTIONS,
Vol. 57,
No. 8,
pp. 1370-1373,
Aug. 2016.
公式リンク
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趙国偉,
MUHAMMADIQBAL,
鈴木耕太,
平山雅章,
菅野了次.
新規 LiScO2系リチウムイオン導電体の合成、結晶構造解析、イオン導電特性,
粉体および粉末冶金,
粉体および粉末冶金,
Vol. 11,
No. 62,
pp. 543-547,
Nov. 2015.
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Muhammad Iqbal,
Kota Suzuki,
Genki Kobayashi,
Guowei Zhao,
Masaaki Hirayama,
Ryoji Kanno.
Lithium ion conduction in doped LaLiO2 system,
Solid State Ionics,
Vol. 285,
pp. 33-37,
Oct. 2015.
公式リンク
国内会議発表 (査読有り)
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鈴木耕太,
大浦恒星,
Zhao Guowei,
世古敦人,
平山雅章,
田中功,
菅野了次.
機械学習を用いたリチウム導電性酸化物の探索,
第46回固体イオニクス討論会,
Dec. 2020.
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鈴木 耕太,
大浦 恒星,
Zhao Guowei,
世古 敦人,
平山 雅章,
田中 功,
菅野 了次.
組成、結晶構造に基づく酸化物系リチウムイオン導電体の探索,
第61回電池討論会,
Nov. 2020.
国際会議発表 (査読なし・不明)
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Guowei Zhao,
Kota Suzuki,
Tomoaki Seki,
Xueying Sun,
Masaaki Hirayama,
Ryoji Kanno.
ϒ-Li3PO4-Type Solid Electrolytes in Li4GeO4-Li4SiO4-Li3VO4 Quasi-Ternary System with High Lithium Ionic Conductivity,
PRiME2020,
Oct. 2020.
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Guowei Zhao,
Muhammad Iqbal,
Kota Suzuki,
Masaaki Hirayama,
Ryoji Kanno.
Novel lithium ion conducting oxides based on LiScO2,
International Chemical Congress of Pacific Basin Societies(PACIFICHEM)2015,
Dec. 2015.
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Guowei Zhao,
Muhammad Iqbal,
Kouta Suzuki,
Masaaki Hirayama,
Ryoji KANNO.
Novel lithium ion conductors base on LiMO2 (M = Sc, Ga) system,
環太平洋国際化学会議,美国夏威夷檀香山Poster#250, International Chemical Congress of Pacific Basin Societies (PACIFICHEM),
2015.
国内会議発表 (査読なし・不明)
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鈴木耕太,
Zhao Guowei,
平山雅章,
菅野了次.
多成分系LISICONの合成とイオン導電特性,
第47回固体イオニクス討論会,
Dec. 2021.
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Guowei Zhao,
Kouta Suzuki,
Masao Yonemura,
Masaaki Hirayama,
Ryoji KANNO.
Enhancing fast lithium ion conduction in Lithium Superionic Conductor (LISICON) Solid Electrolyte Li3.75(Ge0.75P0.25)O4", Guowei Z,
第45回固体イオニクス討論会,
Nov. 2019.
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Guowei Zhao,
Kota Suzuki,
Masao Yonemura,
Masaaki Hirayama,
Ryoji Kanno.
Cation substitution effects for lithium ion conductors in Li4GeO4-Li3PO4 System,
第57回セラミックス基礎討論会,
Jan. 2019.
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Guowei ZHAO,
Muhammad IQBAL,
Kota SUZUKI,
Masaaki HIRAYAMA,
Ryoji KANNO.
Synthesis, Crystal Structure, and Ionic Conductivity of New Lithium Ion Conductors Based on LaScO3 with Perovskite Structure,
粉体粉末冶金協会平成29年度春季大会,
June 2017.
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Guowei Zhao,
Muhammad Iqbal,
Kouta Suzuki,
Masaaki Hirayama,
Ryoji KANNO.
New lithium ion conductor in perovskite La-Li-Sc-O system,
新学術領域「ナノ構造情報」の若手の会,
2016.
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Guowei Zhao,
Muhammad Iqbal,
Kouta Suzuki,
Masaaki Hirayama,
Ryoji KANNO.
Synthesis, Structure and Ionic Conductivity of New Lithium Ion Conductors in LiMO2 (M= Sc, Ga) system,
電気化学会第82回大会,
2015.
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Guowei Zhao,
Muhammad Iqbal,
Kouta Suzuki,
Masaaki Hirayama,
Ryoji KANNO.
Synthesis, Structure and Ionic Conductivity of New Lithium Ion Conductors Based on LiMO2 (M= Sc, Ga) System,
粉体粉末冶金協会平成27年度春季大会,
2015.
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Muhammad Iqbal,
Kota Suzuki,
Genki Kobayashi,
Guowei Zhao,
Masaaki Hirayama,
Ryoji Kanno.
Lithium ion conduction in doped LaLiO2 system,
第40回固体イオニクス討論会,
Nov. 2014.
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Muhammad Iqbal,
Kouta Suzuki,
Genki Kobayashi,
Guowei Zhao,
Masaaki Hirayama,
Ryoji KANNO.
Lithium ion conduction in doped LaLiO2 system,
固体イオニクス第40回討論会,
2014.
-
Guowei Zhao,
Muhammad Iqbal,
THANYA PHRAEWPHIPHAT,
Kouta Suzuki,
Masaaki Hirayama,
Ryoji KANNO.
Synthesis and electrochemical properties of lithium ion conductors: Li-La-M-O3 (M=Sc, Ga) with perovskite structure,
新学術領域「ナノ構造情報」の若手の会,
2014.
その他の論文・著書など
学位論文
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Synthesis, structures and electrochemical properties of lithium ion conducting oxides with rock-salt, perovskite and anti-fluorite structures,
Thesis,
Doctor (Science),
Tokyo Institute of Technology,
2017/03/26,
Official URL
-
Synthesis, structures and electrochemical properties of lithium ion conducting oxides with rock-salt, perovskite and anti-fluorite structures,
Outline,
Doctor (Science),
Tokyo Institute of Technology,
2017/03/26,
-
Synthesis, structures and electrochemical properties of lithium ion conducting oxides with rock-salt, perovskite and anti-fluorite structures,
Exam Summary,
Doctor (Science),
Tokyo Institute of Technology,
2017/03/26,
Official URL
-
Synthesis, structures and electrochemical properties of lithium ion conducting oxides with rock-salt, perovskite and anti-fluorite structures,
Summary,
Doctor (Science),
Tokyo Institute of Technology,
2017/03/26,
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