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Cocoon-shaped P3-type K0.5Mn0.7Ni0.3O2 as an advanced cathode material for potassium-ion batteries 被引量:1
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作者 Liping Duan Jianzhi Xu +5 位作者 Yifan Xu Ruiqi Tian Yingying Sun Chuannan Zhu xiangyin mo Xiaosi Zhou 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第1期332-338,I0008,共8页
Potassium ion batteries(PIBs)are emerging as potential next-generation energy storage systems on account of their low cost and high theoretical energy density.Nevertheless,they also face challenges of low specific cap... Potassium ion batteries(PIBs)are emerging as potential next-generation energy storage systems on account of their low cost and high theoretical energy density.Nevertheless,they also face challenges of low specific capacity and suboptimal cycling stability.Herein,we synthesize a cocoon-like P3-type K_(0.5)Mn_(0.7)Ni_(0.3)O_(2)(KMNO)cathode material by a self-template method.The KMNO cocoons possess a hierarchical layered architecture composed of nanoparticle stacking,which can accelerate the transport kinetics of potassium ions,mitigate the stress caused by K^(+)intercalation and deintercalation,and improve structural stability.In addition,Ni can not only alleviate the Jahn-Teller distortion and suppress the phase transition to stabilize the structure,but also act as an electrochemically active element,providing the capacity of two electrons from Ni2+to Ni4+.Combining the advantages of structure and nickel substitution,the P3-type KMNO cocoons are used for electrochemical performance testing of PIB cathodes,delivering an excellent rate capability of 57.1 m A h g^(-1)at 500 m A g^(-1)and a remarkable cycling stability of 77.0%over 300 cycles at 100 m A g^(-1).Impressively,the KMNO cocoons//pitch-derived soft carbon assembled full battery exhibits superior electrochemical performance with a reversible capacity of 79.7 m A h g^(-1)at 50 m A g^(-1).Moreover,ex-situ XRD also further reveals a solid solution phase reaction with a volume change of only 1.46%.This work furnishes a suitable approach to fabricating highperformance layered oxide cathodes for PIBs with outstanding cycling stability and rate capability. 展开更多
关键词 Layered metal oxides Cathode Potassium-ion batteries COCOONS Ex-situ XRD
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镁离子电池电解液的研究进展 被引量:2
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作者 满跃华 Pauline Jaumaux +4 位作者 徐一帆 费雅婷 莫祥银 汪国秀 周小四 《Science Bulletin》 SCIE EI CAS CSCD 2023年第16期1819-1842,M0004,共25页
镁离子电池因其高理论容量和丰富的自然资源被认为是下一代储能系统的潜在候选者.然而,镁离子电池的发展受到镁负极与常见的镁盐和传统有机液体电解液溶剂不相容的限制.因此,电解液的发展是开发高效镁离子电池的决定性因素.镁离子电池... 镁离子电池因其高理论容量和丰富的自然资源被认为是下一代储能系统的潜在候选者.然而,镁离子电池的发展受到镁负极与常见的镁盐和传统有机液体电解液溶剂不相容的限制.因此,电解液的发展是开发高效镁离子电池的决定性因素.镁离子电池的进一步应用所面临的一个主要挑战是开发具有适当的电化学窗口、与镁负极兼容、安全性高的电解液.当前,用于镁离子电池的主要电解液类型包括有机液体电解液、水系电解液、离子液体电解液和固态电解质.本文强调了每个类别中高性能镁离子电池电解液的最新进展,对先进电解液的设计策略进行了系统评估,分析了每种电解液的优点和局限性以及对现有问题的解决方案,并从电解液合成的角度讨论了镁离子电池的发展;最后,讨论并设想了镁离子电池电解液的未来设计,这将对进一步提高镁离子电池的性能提供支持. 展开更多
关键词 固态电解质 镁离子电池 理论容量 电化学窗口 水系电解液 有机液体 储能系统 系统评估
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