Yoko Nabeshima
National Institute of Advanced Industrial Science and Technology
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Publication
Featured researches published by Yoko Nabeshima.
Journal of The Electrochemical Society | 2007
Mitsuharu Tabuchi; Yoko Nabeshima; Masahiro Shikano; Kazuaki Ado; Hiroyuki Kageyama; Kuniaki Tatsumi
Optimized Fe-substituted Li 2 MnO 3 [Li 1+x (Fe y M n1-y ) 1-x O 2 , 0 < x < 1/3, 0.3 < y < 0.7], a positive electrode material, exhibited high initial charge and discharge capacity (200-320 and 150-215 mAh/g, respectively) during charge-discharge tests between 2.5 and 4.5 or 4.8 V at 60°C. All samples were obtained from a mixed-alkaline hydrothermal reaction using the Fe-Mn coprecipitate, KOH, LiOH·H 2 O, and KClO 3 . The hydrothermally obtained samples showed an initial discharge capacity (150-200 mAh/g) when the Fe content, y, was less than 0.6. Both the initial charge and discharge capacities were governed by their Li contents. The electrochemical characteristics were improved by postheating treatment (500-750°C) with LiOH H 2 O. The initial discharge capacity for the samples with y = 0.5 reached 215 mAh/g and capacity fading with cycles was less than in the hydrothermally obtained sample. The initial discharge capacity, energy density, and cycle efficiency were improved by maximizing their respective specific surface areas through minimization of their primary particle size. The electrochemical performance of Fe-substituted Li 2 MnO 3 means that it is an attractive candidate as an inexpensive 3-V-class positive electrode material that is suitable for large-scale lithium-ion batteries. We note, however, that the capacity fade observed on extended cycling must be suppressed if this material is to become commercially viable (or practical).
Journal of Power Sources | 2010
Mitsuharu Tabuchi; Yoko Nabeshima; Tomonari Takeuchi; Kuniaki Tatsumi; Junichi Imaizumi; Yoshiaki Nitta
Journal of Power Sources | 2011
Mitsuharu Tabuchi; Yoko Nabeshima; Tomonari Takeuchi; Hiroyuki Kageyama; Kuniaki Tatsumi; Junji Akimoto; Hideka Shibuya; Junichi Imaizumi
Journal of Power Sources | 2007
Mitsuharu Tabuchi; Yoko Nabeshima; Kazuaki Ado; Masahiro Shikano; Hiroyuki Kageyama; Kuniaki Tatsumi
Journal of Power Sources | 2013
Mitsuharu Tabuchi; Yoko Nabeshima; Tomonari Takeuchi; Hiroyuki Kageyama; Junichi Imaizumi; Hideka Shibuya; Junji Akimoto
Archive | 2003
Kazuaki Ato; Hiroyuki Kageyama; Masahiro Kano; Yoko Nabeshima; Mitsuharu Tabuchi; Tomonari Takeuchi; Kuniaki Tatsumi; 光春 田渕; 友成 竹内; 博之 蔭山; 国昭 辰巳; 洋子 鍋島; 和明 阿度; 昌弘 鹿野
Archive | 2007
Mitsuharu Tabuchi; Yoko Nabeshima; Kazuaki Ado; Kuniaki Tatsumi; Tomonari Takeuchi
Archive | 2008
Yoko Nabeshima; Mitsuharu Tabuchi; Tomonari Takeuchi; Kuniaki Tatsumi; 光春 田渕; 友成 竹内; 国昭 辰巳; 洋子 鍋島
Journal of Power Sources | 2014
Tomoki Akita; Mitsuharu Tabuchi; Yoko Nabeshima; Kuniaki Tatsumi; Masanori Kohyama
Archive | 2011
Mitsuharu Tabuchi; 光春 田渕; Yoko Nabeshima; 洋子 鍋島; Tomonari Takeuchi; 友成 竹内; Kuniaki Tatsumi; 国昭 辰巳; Junji Akimoto; 順二 秋本; Junichi Imaizumi; 純一 今泉; Hideka Shibuya; 英香 渋谷
Collaboration
Dive into the Yoko Nabeshima's collaboration.
National Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputs