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自发光框架实现高效准固态锂电池的定向离子输运

Directional Ion Transport Enabled by Self-Luminous Framework for High-Performance Quasi-Solid-State Lithium Metal Batteries.

机构信息

State Key Laboratory of Optoelectronic Materials and Technologies, School of Materials Science and Engineering, Sun Yat-sen (Zhongshan) University, Guangzhou, 510275, P. R. China.

出版信息

Adv Sci (Weinh). 2023 Feb;10(4):e2205108. doi: 10.1002/advs.202205108. Epub 2022 Dec 11.

Abstract

Composite gel polymer electrolyte (CGPE), derived from ceramic fillers has emerged as one of the most promising candidates to improve the safety and cycling stability of lithium metal batteries. However, the poor interface compatibility between the ceramic phase and polymer phase in CGPE severely deteriorates lithium-ion pathways and cell performances. In this work, a fluorescent ceramic nanowire network that can palliate the energy barrier of photoinitiators and contribute to preferential nucleation and growth of polymer monomers is developed, thus inducing polymer segment orderly arrangement and tightly combination. A proof-of-concept study lies on fabrications of poly(ethylene oxide) closely coating on the ceramic nanowires, thus dividing the matrix into mesh units that contribute to directional lithium-ion flux and dendrite-free deposition on the metallic anode. The CGPE, based on the state-of-the-art self-luminous framework, facilitates high-performance quasi-solid-state Li||LiFePO cell, registering a high capacity of 143.3 mAh g after 120 cycles at a mass loading of 12 mg cm . X-ray computed tomography provides an insight into the relationship between directional lithium-ion diffusion and lithium deposition behavior over the electrochemical processes. The results open a door to improve the electrochemical performances of composite electrolytes in various applications.

摘要

复合凝胶聚合物电解质(CGPE)来源于陶瓷填料,已成为提高锂电池安全性和循环稳定性的最有前途的候选材料之一。然而,CGPE 中陶瓷相与聚合物相之间较差的界面相容性严重恶化了锂离子的传输途径和电池性能。在这项工作中,开发了一种荧光陶瓷纳米线网络,它可以减轻光引发剂的能量势垒,并有助于聚合物单体的优先成核和生长,从而诱导聚合物链段的有序排列和紧密结合。一个概念验证研究在于制备紧密包覆在陶瓷纳米线上的聚(氧化乙烯),从而将基体分为网格单元,有助于锂离子在金属阳极上的定向流动和无枝晶沉积。基于最先进的自发光框架的 CGPE 促进了高性能准固态 Li||LiFePO 电池的发展,在质量负载为 12mg cm 的情况下,经过 120 次循环后,其容量高达 143.3mAh g。X 射线计算机断层扫描提供了一个深入了解电化学过程中定向锂离子扩散与锂沉积行为之间关系的机会。该结果为改善各种应用中复合电解质的电化学性能开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4154/9896055/cd2a0ca83370/ADVS-10-2205108-g003.jpg

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