Lithium titanate hydrates with superfast and stable cycling in lithium ion batteries

被引:0
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作者
Shitong Wang
Wei Quan
Zhi Zhu
Yong Yang
Qi Liu
Yang Ren
Xiaoyi Zhang
Rui Xu
Ye Hong
Zhongtai Zhang
Khalil Amine
Zilong Tang
Jun Lu
Ju Li
机构
[1] Tsinghua University,State Key Lab of New Ceramics and Fine Processing, School of Materials Science and Engineering
[2] Massachusetts Institute of Technology,Department of Nuclear Science and Engineering
[3] Tsinghua University,Department of Chemistry
[4] Argonne National Laboratory,X
[5] Argonne National Laboratory,ray Science Division, Advanced Photon Source
[6] Massachusetts Institute of Technology,Chemical Sciences and Engineering Division
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Nature Communications | / 8卷
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摘要
Lithium titanate and titanium dioxide are two best-known high-performance electrodes that can cycle around 10,000 times in aprotic lithium ion electrolytes. Here we show there exists more lithium titanate hydrates with superfast and stable cycling. That is, water promotes structural diversity and nanostructuring of compounds, but does not necessarily degrade electrochemical cycling stability or performance in aprotic electrolytes. As a lithium ion battery anode, our multi-phase lithium titanate hydrates show a specific capacity of about 130 mA h g−1 at ~35 C (fully charged within ~100 s) and sustain more than 10,000 cycles with capacity fade of only 0.001% per cycle. In situ synchrotron diffraction reveals no 2-phase transformations, but a single solid-solution behavior during battery cycling. So instead of just a nanostructured intermediate to be calcined, lithium titanate hydrates can be the desirable final destination.
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