フルテキストファイル | |
著者 |
薄井 洋行
Department of Chemistry and Biotechnology, Graduate School of Engineering and Center for Research on Green Sustainable Chemistry, Tottori University
研究者総覧
KAKEN
道見 康弘
Department of Chemistry and Biotechnology, Graduate School of Engineering and Center for Research on Green Sustainable Chemistry, Tottori University
研究者総覧
KAKEN
Thi Hay Nguyen
Course of Chemistry and Biotechnology, Department of Engineering, Graduate School of Sustainability Science and Center for Research on Green Sustainable Chemistry, Tottori University
Tanaka, Yuri
Course of Chemistry and Biotechnology, Department of Engineering, Graduate School of Sustainability Science and Center for Research on Green Sustainable Chemistry, Tottori University
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抄録 | We hydrothermally synthesized In-doped rutile TiO2 particles in an anionic surfactant solution and investigated the influences of In doping and the particle morphology on the Na+ storage properties. The solid solubility limit was found to be 0.8 atom % in In-doped TiO2. In the case where no surfactant was used, the best anode performance was obtained for 0.8 atom % In-doped TiO2 electrode by the benefits of three doping effects: (i) expanded diffusion-path size, (ii) improved electronic conductivity, and (iii) reduced electron charge density in the path. Further enhancement in the performance was achieved for the In-doped TiO2 with a reduced particle length by the synthesis in the surfactant solution. This electrode exhibited a better cycle stability and maintained a high discharge capacity of 240 mA h g–1 for 200 cycles. The reason is probably that Na+ can be inserted in the inner part of TiO2 particles because of its reduced particle length.
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出版者 | American Chemical Society
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資料タイプ |
学術雑誌論文
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外部リンク | |
ISSN | 24701343
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掲載誌名 | ACS OMEGA
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巻 | 5
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号 | 25
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開始ページ | 15495
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終了ページ | 15501
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発行日 | 2020-06-30
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出版者DOI | |
著者版フラグ |
出版社版
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著作権表記 | (C) 2020 American Chemical Society. This is an open access article published under an ACS AuthorChoice License, which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
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掲載情報 | Usui Hiroyuki, Domi Yasuhiro, Thi Hay Nguyen , et al. Indium-Doped Rutile Titanium Oxide with Reduced Particle Length and Its Sodium Storage Properties. ACS OMEGA. 2020. 5(25). 15495-15501. doi:10.1021/acsomega.0c01623
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部局名 |
工学部・工学研究科
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言語 |
英語
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Web of Science Key ut | WOS:000546100300067
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