Fluorophosphates: Next Generation Cathode Materials for Rechargeable Batteries

材料科学 阴极 能量密度 锂(药物) 电池(电) 纳米技术 储能 氧化物 工程物理 电化学 电气工程 电极 化学 工程类 冶金 功率(物理) 物理化学 内分泌学 物理 医学 量子力学
作者
Lalit Sharma,Shashishekar P. Adiga,Husam N. Alshareef,Prabeer Barpanda
出处
期刊:Advanced Energy Materials [Wiley]
卷期号:10 (43) 被引量:86
标识
DOI:10.1002/aenm.202001449
摘要

Abstract Cost, safety, and cycle life have emerged as prime concerns to build robust batteries to cater to the global energy demand. These concerns are impacted by all battery components, but the realizable energy density of lithium‐ion batteries (LIBs) is limited by the performance of cathodes. Thus, cathode materials have a significant role to play in advancing the performance and economics of secondary batteries. To realize next generation Li‐ion and post Li‐ion batteries, a variety of cathode insertion materials have been explored, but finding a cost effective and stable cathode material that can deliver high energy density has been a daunting task. Oxide cathode materials are ubiquitous in commercial applications, as they can deliver high capacity. In comparison, polyanionic insertion materials can offer tuneable (high) redox potential, operational safety, and structural as well as thermal stability. Indeed, a wide range of polyanionic materials like phosphates, borates, sulfates, and their complexes have been reported. In this article, the alkali metal fluorophosphates class of polyanionic cathodes for secondary batteries is discussed. The various reported fluorophosphate insertion materials are discussed in terms of their electrochemical and electrocatalytic properties. The historical overview, recent progress, and remaining challenges for polyanionic fluorophosphates are presented along with suggested future research directions and potential application.
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