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使用柔性单离子导电聚合物电解质有效抑制锂枝晶生长

Effective Suppression of Lithium Dendrite Growth Using a Flexible Single-Ion Conducting Polymer Electrolyte.

作者信息

Deng Kuirong, Qin Jiaxiang, Wang Shuanjin, Ren Shan, Han Dongmei, Xiao Min, Meng Yuezhong

机构信息

The Key Laboratory of Low-Carbon Chemistry and Energy Conservation of Guangdong Province/State Key Laboratory of Optoelectronic Materials and Technologies, School of Materials Science and Engineering, Sun Yat-sen University, Guangzhou, 510275, P. R. China.

出版信息

Small. 2018 Jul 3:e1801420. doi: 10.1002/smll.201801420.

Abstract

A novel single-ion conducting polymer electrolyte (SIPE) membrane with high lithium-ion transference number, good mechanical strength, and excellent ionic conductivity is designed and synthesized by facile coupling of lithium bis(allylmalonato) borate (LiBAMB), pentaerythritol tetrakis (2-mercaptoacetate) (PETMP) and 3,6-dioxa-1,8-octanedithiol (DODT) in an electrospun poly(vinylidienefluoride) (PVDF) supporting membrane via a one-step photoinitiated in situ thiol-ene click reaction. The structure-optimized LiBAMB-PETMP-DODT (LPD)@PVDF SIPE shows an outstanding ionic conductivity of 1.32 × 10 S cm at 25 °C, together with a high lithium-ion transference number of 0.92 and wide electrochemical window up to 6.0 V. The SIPE exhibits high tensile strength of 7.2 MPa and elongation at break of 269%. Due to these superior performances, the SIPE can suppress lithium dendrite growth, which is confirmed by galvanostatic Li plating/stripping cycling test and analysis of morphology of Li metal electrode surface after cycling test. Li|LPD@PVDF|Li symmetric cell maintains an extremely stable and low overpotential without short circuiting over the 1050 h cycle. The Li|LPD@PVDF|LiFePO cell shows excellent rate capacity and outstanding cycle performance compared to cells based on a conventional liquid electrolyte (LE) with Celgard separator. The facile approach of the SIPE provides an effective and promising electrolyte for safe, long-life, and high-rate lithium metal batteries.

摘要

通过在静电纺丝聚偏氟乙烯(PVDF)支撑膜中,使双(烯丙基丙二酸根)硼酸锂(LiBAMB)、季戊四醇四(2-巯基乙酸酯)(PETMP)和3,6-二氧杂-1,8-辛二硫醇(DODT)通过一步光引发原位硫醇-烯点击反应进行简便偶联,设计并合成了一种具有高锂离子迁移数、良好机械强度和优异离子电导率的新型单离子导电聚合物电解质(SIPE)膜。结构优化后的LiBAMB-PETMP-DODT(LPD)@PVDF SIPE在25℃时表现出1.32×10 S cm的出色离子电导率,同时具有0.92的高锂离子迁移数和高达6.0 V的宽电化学窗口。该SIPE表现出7.2 MPa的高拉伸强度和269%的断裂伸长率。由于这些优异性能,SIPE能够抑制锂枝晶生长,这通过恒电流锂电镀/剥离循环测试以及循环测试后锂金属电极表面形态分析得到证实。Li|LPD@PVDF|Li对称电池在1050小时循环中保持极其稳定且低的过电位,无短路现象。与基于带有Celgard隔膜的传统液体电解质(LE)的电池相比,Li|LPD@PVDF|LiFePO电池显示出优异的倍率性能和出色的循环性能。SIPE的简便制备方法为安全、长寿命和高倍率锂金属电池提供了一种有效且有前景的电解质。

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