Reversible calcium alloying enables a practical room-temperature rechargeable calcium-ion battery with a high discharge voltage

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作者
Meng Wang
Chunlei Jiang
Songquan Zhang
Xiaohe Song
Yongbing Tang
Hui-Ming Cheng
机构
[1] Chinese Academy of Sciences,Functional Thin Films Research Center, Shenzhen Institutes of Advanced Technology
[2] Tsinghua University,Tsinghua
[3] Chinese Academy of Sciences,Berkeley Shenzhen Institute
来源
Nature Chemistry | 2018年 / 10卷
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摘要
Calcium-ion batteries (CIBs) are attractive candidates for energy storage because Ca2+ has low polarization and a reduction potential (−2.87 V versus standard hydrogen electrode, SHE) close to that of Li+ (−3.04 V versus SHE), promising a wide voltage window for a full battery. However, their development is limited by difficulties such as the lack of proper cathode/anode materials for reversible Ca2+ intercalation/de-intercalation, low working voltages (<2 V), low cycling stability, and especially poor room-temperature performance. Here, we report a CIB that can work stably at room temperature in a new cell configuration using graphite as the cathode and tin foils as the anode as well as the current collector. This CIB operates on a highly reversible electrochemical reaction that combines hexafluorophosphate intercalation/de-intercalation at the cathode and a Ca-involved alloying/de-alloying reaction at the anode. An optimized CIB exhibits a working voltage of up to 4.45 V with capacity retention of 95% after 350 cycles.
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页码:667 / 672
页数:5
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