材料科学
表面改性
磷酸铁锂
阴极
涂层
纳米技术
碳纤维
相容性(地球化学)
储能
锂(药物)
氧化物
杂原子
化学工程
碳纳米管
纳米尺度
能量密度
固态
阳极
兴奋剂
高能
低能
作者
Sania Ishtiaq,Abdul Majid,Abdul Qadeer,Mohammad Alkhedher,Niyazi Bulut
出处
期刊:RSC Advances
[Royal Society of Chemistry]
日期:2025-01-01
卷期号:15 (50): 42331-42346
被引量:13
摘要
, LFP) is widely recognized as a cathode material for lithium-ion batteries (LIBs) owing to its excellent high temperature stability, environmental compatibility and impressive cycle retention. Nevertheless, the limited lithium-ion migration rate and poor electronic/ionic conductivities of this material restrict its practical application. This review explores different methods for synthesizing LFP, such as hydrothermal, sol-gel, microwave-assisted, and carbon reduction techniques, assessing them in terms of structural control, scalability, and performance. Additionally, it highlights modification strategies that have evolved from traditional carbon coating to more advanced techniques, such as heteroatom doping in carbon layers, the integration of multi-walled carbon nanotubes (MWCNTs), and thin oxide nanoscale coatings. In this review, the advancements in utilization of LFP for conventional LIB applications as well as in all solid state lithium batteries (ASSLBs) are highlighted, pointing toward future directions for high performance and durable energy storage technologies.
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