电化学
储能
钠
材料科学
纳米技术
能量密度
可再生能源
电极
工程物理
化学
功率(物理)
工程类
电气工程
冶金
物理
物理化学
量子力学
作者
Xingyu Chen,Junhua Chen,Z. Wan,Hu You,Dawei Duan,Yan Zhao,Qiu He
出处
期刊:Small
[Wiley]
日期:2024-10-28
标识
DOI:10.1002/smll.202406458
摘要
Abstract Rechargeable metal‐ion batteries (MIBs) play a pivotal role in advancing the stable supply of renewable energy by efficiently storing and discharging electrical energy. In recent years, to propel the continuous advancement of MIB technology, numerous studies have concentrated on exploring and innovating electrode materials, aiming to engineer commercial batteries with high energy density, superior power density, and extended cycle life. Notably, sodium vanadates have garnered significant attention in the realm of MIBs owing to their distinctive crystal structures, abundant resource reservoirs, and exceptional electrochemical properties. This paper provides a prompt and comprehensive review of the research landscape for various sodium vanadates (such as Na x V 2 O 5 , Na 1+ x V 3 O 8 , Na 2 V 6 O 16 · x H 2 O, etc.) in the domain of MIBs over the past five years. It delves into the structural characteristics, electrochemical performances, and energy storage mechanisms of these materials, while also proposing some effective strategies to augment their electrochemical capabilities. Building upon these insights and prevailing research outcomes, this review envisions the future developmental pathways of sodium vanadates for MIBs and aims to reveal the vast potential of sodium vanadates in the emerging energy storage field and provide researchers with clear insights and perspectives for developing optimal sodium vanadate electrodes.
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