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LiLaTiO 纳米纤维增强聚(偏二氟乙烯)基复合聚合物电解质用于全固态电池。

LiLaTiO Nanofibers Enhanced Poly(vinylidene fluoride)-Based Composite Polymer Electrolytes for All-Solid-State Batteries.

机构信息

Materials Institute of Atomic and Molecular Science , Shaanxi University of Science and Technology , Xi'an 710021 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Nov 13;11(45):42206-42213. doi: 10.1021/acsami.9b14824. Epub 2019 Oct 30.

DOI:10.1021/acsami.9b14824
PMID:31625713
Abstract

Using polymer electrolytes with relatively high mechanical strength, enhanced safety, and excellent flexibility to replace the conventional liquid electrolytes is an effective strategy to curb the Li-dendrite growth in Li-metal batteries (LMBs). However, low ionic conductivity, unsatisfactory thermal stability, and narrow electrochemical window still hinder their applications. Here, we fabricate LiLaTiO (LLTO) nanofiber-enabled poly(vinylidene fluoride) (PVDF)-based composite polymer electrolytes (CPEs) with enhanced mechanical property and wide electrochemical window. The results show that 15 wt % of LLTO nanofibers synergize with PVDF, giving a flexible electrolyte membrane with significantly improved performance, such as high ionic conductivity (5.3 × 10 S cm), wide electrochemical window (5.1 V), high mechanical strength (stress 9.5 MPa, strain 341%), and good thermal stability (thermal degradation 410 °C). In addition, an all-solid-state Li-metal battery of sandwich-type LiFePO/PVDF-CPE (15 wt % of LLTO)/Li delivers satisfactory cycling stability and outstanding rate performance. A reversible capacity of 121 mA h g is delivered at 1 C after 100 cycles. This work exemplifies that the introduction of LLTO nanofibers can improve the electrochemical performances of PVDF-based CPEs used as electrolytes for all-solid-state LMBs.

摘要

使用具有相对较高机械强度、增强安全性和优异柔韧性的聚合物电解质来替代传统的液态电解质是抑制锂金属电池(LMB)中锂枝晶生长的有效策略。然而,低离子电导率、不理想的热稳定性和窄电化学窗口仍然阻碍了它们的应用。在这里,我们制备了具有增强机械性能和宽电化学窗口的 LiLaTiO(LLTO)纳米纤维增强聚偏二氟乙烯(PVDF)基复合聚合物电解质(CPE)。结果表明,15wt%的 LLTO 纳米纤维与 PVDF 协同作用,赋予了具有显著改善性能的柔性电解质膜,例如高离子电导率(5.3×10 S cm)、宽电化学窗口(5.1 V)、高机械强度(应力 9.5 MPa,应变 341%)和良好的热稳定性(热降解 410°C)。此外,夹层式 LiFePO/PVDF-CPE(15wt%的 LLTO)/Li 的全固态 Li 金属电池表现出令人满意的循环稳定性和出色的倍率性能。在 100 次循环后,以 1 C 的电流密度可提供 121 mA h g 的可逆容量。这项工作证明了 LLTO 纳米纤维的引入可以改善用作全固态 LMB 电解质的 PVDF 基 CPE 的电化学性能。

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