纳米技术
材料科学
阴极
纳米技术的应用
电极
纳米颗粒
导电聚合物
工程类
表面改性
纳米生物技术
作者
Jiahao Chen,Xu Wu,Zhiyong Luo,Xinxian Ren,Junhao Chen,Minjie Chen,Chunliu Xu,Yao Xiao,Weiqing Yang
出处
期刊:Chemical Science
[Royal Society of Chemistry]
日期:2026-01-01
卷期号:17 (14): 6848-6882
被引量:1
摘要
(NVPF) cathodes enable a high operating voltage for sodium-ion batteries (SIBs) by virtue of the valence-electron decoupling properties from vanadium metal transition-metal redox centers and polyanionic groups. However, the low intrinsic conductivity and restricted ion diffusion kinetics have led to undesirable electrochemical performance, thereby limiting the further application of NVPF cathodes. The appropriate nanotechnologies can address the intrinsic deficiencies of materials and serve as a key strategy to break through performance bottlenecks. Herein, we summarize the recent progress made to improve the comprehensive performance of NVPF-based cathode materials from the perspective of nanoengineering, typically including nanoarchitecture, nanoscale surface modification and nanostructure tuning to clarify the structural properties, electrochemical behavior and their interplay. Moreover, the remaining challenges and future suggestions for the design of higher-performance NVPF cathodes towards practical SIBs are presented. The current review provides profound insights into the structure-performance relationship and valuable guidance to develop polyanionic NVPF cathodes for practical SIBs toward commercialization.
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