Selection and Surface Modifications of Current Collectors for Anode-Free Polymer-Based Solid-State Batteries

阳极 材料科学 阴极 集电器 电解质 箔法 化学工程 电镀(地质) 电化学 复合数 锂(药物) 涂层 纳米技术 电极 复合材料 化学 工程类 物理化学 内分泌学 地质学 医学 地球物理学
作者
Oihane García‐Calvo,A. Gutiérrez‐Pardo,Izaskun Combarro,Ander Orue,Pedro López‐Aranguren,Idoia Urdampilleta,Andriy Kvasha
出处
期刊:Frontiers in Chemistry [Frontiers Media]
卷期号:10 被引量:5
标识
DOI:10.3389/fchem.2022.934365
摘要

Anode-free batteries (AFB) have attracted increasing interest in recent times because they allow the elimination of the conventional anode from the cell, exploiting lithium inventory from a lithiated cathode. This implies a much simpler, cost-effective, and sustainable approach. The AFB configuration with liquid electrolytes is being explored widely in research but rarely using solid electrolytes. One of the main issues of AFB is the poor reversibility of the lithium-plating/striping process at the anode side. Therefore, in this work, different metal foils have been tested as anode current collectors (CC), and copper foil has been selected as the most promising one. Surface modifications of the selected copper foil have been achieved by its coating using composite layers made of carbon and different metal nanoparticles-such as Ag, Sn, or Zn-in different proportions and with different amounts of a binder. The impact of such coatings and their thickness on the electrochemical performance of single-layer solid-state anode-free pouch cells, based on a PEO electrolyte and a LiFePO4 cathode has been systematically studied. Consequently, a post-mortem analysis of the investigated solid-state AFB is also presented, trying to identify and elucidate possible failure mechanisms to enhance the electrochemical performance of solid-state AFB in the future.
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