电化学
离子电导率
电解质
复合数
锂(药物)
电导率
材料科学
快离子导体
离子
磷酸铁锂
锂电池
无机化学
化学工程
化学
复合材料
电极
离子键合
有机化学
工程类
医学
物理化学
内分泌学
作者
Xue‐Rong Shi,Nengyan Ma,Yixue Wu,Youhua Lu,Qizhen Xiao,Zhaohui Li,Gangtie Lei
标识
DOI:10.1016/j.ssi.2018.08.010
摘要
NASICON-type ceramic electrolyte has been considered as one of the potential candidates for solid state electrolytes with excellent conductivity at room temperature and good stability under atmosphere. In this paper, NASICON-type Li1.3Al0.3Ti1.7(PO4)3 (LATP) was prepared by a solution method and dispersed in poly(vinylidene fluoride) (PVDF) to form LATP/PVDF composite electrolyte membranes (CEM) by the method of casting. The effects of LATP filler on the structure, morphology, ionic conductivity, stability of the LATP/PVDF CEM were studied. It was found that the LATP/PVDF CEM had high lithium ion conductivity and excellent electrochemical stability with the electrochemical stability window up to 5.67 V versus Li+/Li. The discharge capacity of lithium iron phosphate cells assembled with LATP/PVDF CEM was 163.5 mAh g−1 and retained over 95.7% of its initial capacity after 50 cycles. The results show that the addition of LATP filler to PVDF matrix increases the amorphous phase of the polymer by acting as a gel center and the concentration of Li+ is increased, which is beneficial to the synergism in the migration of Li+ and enhances the ionic conductivity.
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