Iron‐Phosphate‐Based Cathode Materials for Cost‐Effective Sodium‐Ion Batteries: Development, Challenges, and Prospects

材料科学 电化学 商业化 阴极 电池(电) 涂层 钠离子电池 电解质 纳米技术 快离子导体 资源(消歧) 化学工程 电极 计算机科学 冶金 化学 电气工程 工程类 业务 物理化学 法拉第效率 计算机网络 功率(物理) 营销 量子力学 物理
作者
Liang He,Huangxu Li,Xiaochen Ge,Shihao Li,Xu Wang,Sha Wang,Liuyun Zhang,Zhian Zhang
出处
期刊:Advanced Materials Interfaces [Wiley]
卷期号:9 (20) 被引量:28
标识
DOI:10.1002/admi.202200515
摘要

Abstract The progress on electrode materials over the last few years has greatly facilitated sodium‐ion batteries (SIBs) toward practical applications. Cost‐effectiveness is the key character to realize practical applications of SIBs. The iron‐based phosphate materials (IPBMs) are composed of the resource abundant and low‐cost Na–Fe–P–O system and have demonstrated intriguing sodium‐storage properties to reach this goal. Starting from NaFePO 4 , through compositional and structural engineering, many IPBMs have been developed in recent years. This review offers a comprehensive overview about the development of IPBMs. Crystal structure, electrochemical performance, and reaction mechanism of three main categories (phosphates, pyrophosphates, mixed polyanions) of IPBMs and their represented materials are systematically introduced. Besides, the key challenges encountered by IPBMs, including the impurity phase issue, low‐quality carbon coating, limited energy density, and random morphology are proposed. Finally, perspectives on the future development of IPBMs from intrinsic properties regulation to full battery manufacturing are highlighted in aspects of electrochemical performance enhancements, mechanism investigation, surface and electrolytes, and commercialization. It is believed that this review is timely and is of great importance to promote applications of cost‐effective sodium‐ion batteries.
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