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J-GLOBAL ID:200901074081090884
Update date: Oct. 01, 2022
Sonoyama Noriyuki
ソノヤマ ノリユキ | Sonoyama Noriyuki
Affiliation and department:
Nagoya Institute of Technology
About Nagoya Institute of Technology
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Job title:
Associate Professor
Homepage URL (1):
http://www.ach.nitech.ac.jp/~inorg/sonoyama/Site/Home.html
Research keywords (1):
-
Research theme for competitive and other funds (1):
2005 - 新規蛍光体材料の開発
Papers (36):
Noriyuki Sonoyama, Kaori Niki, Akihiro Koide, Mina Eguchi, Yoshitaka Ogasawara, TetsuyaTsukada, Patrick K.Dedetemo. Structure and reaction mechanism of binary Ni-Al oxides as materials for lithium-ion battery anodes. Dalton Transactions. 2021. 50. 14176-14186
Sonoyama, Noriyuki, Takagi, Keita, Yoshida, Satoshi, Ota, Tomoki, Kimilita, Patrick Dedetemo, Ogasawara, Yoshitaka. Optical properties of the europium (II) and (III) ions doped metal oxides obtained from sintering layered double hydroxides, and their fine structures. Applied Clay Science. 2020. 186. 105440
Erfe Ni, Tetsuya Tsukada, Qing Wen, Noriyuki Sonoyama. Improved performance of nano-sized polyoxometalate as lithium-battery cathode by conductive polymer coating. Journal of the Electrochemical Society. 2019. 166. 3. A5226-A5230
A.Koide, M.Eguchi, N.Komiya, J.Kogo, N.Sonoyama, K.Niki. XANES analysis for cation-vacancy distribution induced by doping Al ions in transition-metal-oxide anodes of lithium battery. Radiation Physics and Chemistry. 2019. 175. 108154-108154
Erfu Ni, Shinya Uematsu, Tetsuya Tsukada, Noriyuki Sonoyama. Lithium intercalation into polyoxomolybdate (NH4)(6)[NiMo9O32] as the cathode material of lithium battery. SOLID STATE IONICS. 2016. 285. 83-90
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MISC (1):
園山範之. 分子性酸化物クラスターイオン系リチウム電池用電極材料の開発. 新東技報. 2012. 30. 12. 1-6
Books (1):
全固体電池のイオン伝導性向上技術と材料、製造プロセスの開発
技術情報協会 2017 ISBN:9784861046476
Lectures and oral presentations (74):
Al 添加層状岩塩型 LiMnO2 の電気化学特性
(第62回電池討論会 2021)
Ti固溶Mn酸リチウムイオン電池正極材料の構造と電気化学特性
(第52回 中部化学関係学協会支部連合秋季大会 2021)
構造安定性の向上を目指したMg-Al系層状複水酸化物ゲルの合成と電気化学特性評価
(第52回 中部化学関係学協会支部連合秋季大会 2021)
Al固溶層状LiMnO2の局所構造と電気化学特性
(第24回 XAFS討論会 2021)
ゲル状層状複水酸化物の構造とイオン導電性
(第46回固体イオニクス討論会 2020)
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