A quasi-solid-state electrolyte with high ionic conductivity for stable lithium-ion batteries

被引:11
作者
Zhang WenJing [1 ]
Li SenLin [1 ]
Zhang YuRong [1 ]
Wang XingHui [2 ]
Liu JingDong [1 ]
Zheng YuanHui [1 ]
机构
[1] Fuzhou Univ, Coll Chem, Fujian Prov Key Lab Adv Inorgan Oxygenated Mat, Fuzhou 350108, Peoples R China
[2] Fuzhou Univ, Coll Phys & Informat Engn, Fuzhou 350108, Peoples R China
关键词
quasi-solid-state electrolyte; ionic conductivity; electrochemical window; photopolymerization; lithium-ion batteries; POLYMER ELECTROLYTE; METAL BATTERIES; POLYSULFIDES;
D O I
10.1007/s11431-022-2075-8
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The practical applications of solid-state electrolytes in lithium-ion batteries (LIBs) are hindered by their low ionic conductivity and high interfacial resistance. Herein, an ethoxylated trimethylolpropane triacrylate based quasi-solid-state electrolyte (ETPTA-QSSE) with a three-dimensional (3D) network is prepared by a one-step in-situ photopolymerization method. The 3D network is designed to overcome the contradiction between the plasticizer-related ionic conductivity and the thickness-dependent mechanical property of quasi-solid-state electrolytes. The ETPTA-QSSE achieves superb room-temperature ionic conductivity up to 4.55x10(-3) S cm(-1), a high lithium ion transference number of 0.57, along with a wide electrochemical window of 5.3 V (vs. Li+/Li), which outperforms most ever of the reported solid-state electrolytes. Owing to the robust network structure and the cathode-electrolyte integrated electrode design, Li metal symmetrical cells show reduced interface resistance and reinforced electrode/ electrolyte interface stability. When applying the ETPTA-QSSE in LiFePO4 parallel to Li cells, the quasi-solid-state cell demonstrates an enhanced initial discharge capacity (155.5 mAh g(-1) at 0.2 C) accompanied by a high average Coulombic efficiency of greater than 99.3%, offering capacity retention of 92% after 200 cycles. Accordingly, this work sheds light on the strategy of enhancing ionic conductivity and reducing interfacial resistance of quasi-solid-state electrolytes, which is promising for high-voltage LIBs.
引用
收藏
页码:2369 / 2379
页数:11
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