Cosolvent electrolyte chemistries for high-voltage potassium-ion battery

被引:0
|
作者
Mengkang Shen [1 ]
Zhongqin Dai [2 ]
Ling Fan [1 ]
Hongwei Fu [1 ]
Yuanhui Geng [1 ]
Jie Guan [1 ]
Fanfei Sun [3 ,4 ]
Apparao MRao [5 ]
Jiang Zhou [6 ]
Bingan Lu [1 ,7 ]
机构
[1] School of Physics and Electronics,Hunan University
[2] School of Physical Science and Technology,Shanghai Tech University
[3] Shanghai Synchrotron Radiation Facility, Shanghai Advanced Research Institute, Chinese Academy of Sciences
[4] Shanghai Institute of Applied Physics, Chinese Academy of Sciences
[5] Department of Physics and Astronomy, Clemson Nanomaterials Institute, Clemson University
[6] School of Materials Science and Engineering, Central South University
[7] State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan
关键词
D O I
暂无
中图分类号
TM912 [蓄电池]; O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
The poor oxidation resistance of traditional electrolytes has hampered the development of high-voltage potassium-ion battery technology. Here, we present a cosolvent electrolyte design strategy to overcome the high-voltage limitations of potassium-ion electrolyte chemistries. The cosolvent electrolyte breaks the dissolution limitation of the salt through ion–dipole interactions, significantly enlarging the anion-rich solvation clusters, as verified by the in situ synchrotron-based wide-angle X-ray scattering experiments.Furthermore, the large anion-rich solvation clusters also facilitate the formation of an effective electrode–electrolyte interphase, thereby enhancing compatibility with high-voltage electrodes. The cosolvent electrolyte enables K||Prussian blue cells (2–4.5 V) to operate for >700 cycles with a capacity retention of 91.9%. Our cosolvent electrolyte design strategy paves new avenues for the development of high-voltage potassium-ion batteries and beyond.
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页码:172 / 182
页数:11
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