Influence of synthesis conditions on crystal formation and electrochemical properties of TiO2(B) particles as anode materials for lithium-ion batteries

被引:18
作者
Harada, Yasuhiro [1 ]
Hoshina, Keigo [1 ]
Inagaki, Hiroki [1 ]
Takami, Norio [1 ]
机构
[1] Toshiba Co Ltd, Corp Res & Dev Ctr, Saiwai Ku, Kawasaki, Kanagawa 2128582, Japan
关键词
Lithium ion batteries; TiO2(B); TiO2; Titanium dioxide; Anode material; NEGATIVE ELECTRODE; INSERTION; LI1.33TI1.67O4; NANOTUBES;
D O I
10.1016/j.electacta.2013.08.148
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
TiO2(B) particles as the anode material for lithium-ion batteries were synthesized from three kinds of layered alkali titanates Na2Ti3O7, K2Ti4O9 and Cs2Ti5O11 via H+ ion-exchange followed by heating under several conditions in order to clarify the effect of synthesis conditions on crystal formation and electrochemical properties. Phase formation and crystal structure were analyzed by X-ray diffraction, inductively coupled plasma analysis, and transmission electron microscopy. Reducing of residual alkali cations in the intermediates with ion-exchanging for 2 weeks led to relative high crystallinity which is suitable for smooth migration of lithium ions and has low reactivity with a practical electrolyte. The primitive cell volume of TiO2(B) increased with decreasing heat-treatment temperature of the intermediates. A primitive cell volume of 0.300 nm(3) in TiO2(B) structure, which was successfully obtained from the precursor K2Ti4O9 by heating the intermediate at 350 degrees C for 2 h, causes an expanding of the lithium pathways and storage sites and had a high reversible capacity of 253.1 mA hg(-1) close to that of TiO2(B) nanopaticles. This TiO2(B) also showed good cycle performance with the reversible capacity after 200 cycles remaining 95% of the initial capacity, using a practical electrolyte such as LiPF6 in a solution of ethylene carbonate and diethyl carbonate. Consequently, synthesis conditions of H+ ion-exchange time and heat-treatment temperature should be carefully optimized to obtain the large reversible capacity and stable cycle performance of TiO2(B) synthesized from the layered alkali titanates via the H+ ion-exchange process. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:310 / 317
页数:8
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