TiO2 rutile—An alternative anode material for safe lithium-ion batteries

TiO2 rutile—An alternative anode material for safe lithium-ion batteries
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DOI:
10.1016/j.jpowsour.2010.09.109
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发表时间:
2011-08
影响因子:
9.2
通讯作者:
M. Pfanzelt;P. Kubiak;Meike Fleischhammer;M. Wohlfahrt‐Mehrens
M. Pfanzelt;P. Kubiak;Meike Fleischhammer;M. Wohlfahrt‐Mehrens
中科院分区:
工程技术2区
文献类型:
--
作者:
M. Pfanzelt;P. Kubiak;Meike Fleischhammer;M. Wohlfahrt‐Mehrens

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采用电化学方法和热分析方法研究了金红石型纳米TiO2的性质。该材料显示出高容量、高倍率性能和优异的循环稳定性。通过热分析可以清楚地证明金红石焊条的安全性。锂化金红石电极表现出放热反应,能量释放非常小,它们主要与表面膜(SEI)分解有关。的阻抗谱强烈表明表面膜的形成,但电荷转移和SEI形成的电子能谱不能解决在任何电位。此外,一种新的袋式电池的设计,这是适合于在原位测量,如FTIR,拉曼和XRD的介绍,其效率是通过在原位光学显微镜证明。
We investigate the properties of nanosized TiO2rutile by electrochemical methods and thermal analysis. The material shows a high capacity, high rate performance and excellent cycling stability. We can clearly prove the safer character of rutile electrodes by thermal analysis. The lithiated rutile electrodes exhibit exothermic reactions with a very small energy release and they are mainly related to surface film (SEI) decomposition. The impedance spectra strongly indicate the formation of a surface film, but the semicircles of charge transfer and SEI formation cannot be resolved at any potential. In addition a new pouch cell design which is suitable for in situ measurements such as FTIR, Raman and XRD is introduced and its efficiency is proven by in situ optical microscopy.