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铈掺杂双金属有机框架作为可充电碱性电池的超高容量阴极

Cerium-doped bimetal organic framework as a superhigh capacity cathode for rechargeable alkaline batteries.

作者信息

Li Junpeng, Zhao Guobang, Zhao Hongyang, Zhao Ningning, Lu Leilei, Liu Nailiang, Wang Miao, Ma Chunjie, Zhang Qian, Du Yaping

机构信息

Department of Applied Chemistry, Xi'an University of Technology, Xi'an, Shaanxi 710048, China.

Frontier Institute of Science and Technology, Xi'an Jiaotong University, Xi'an, Shaanxi 710054, China.

出版信息

Nanoscale. 2021 Feb 14;13(6):3581-3587. doi: 10.1039/d0nr08696g. Epub 2021 Feb 5.

Abstract

In this work, cerium (Ce)-doped NiCo-MOF (metal organic framework) was investigated for its application as a cathode material of alkaline batteries. Inert substitution of Ni/Co by Ce in MOF can make Ce to become part of the backbone of the framework and then ensure structure stability during redox reaction, which greatly improved charge and discharge cycle stability. With dopant mole fraction up to 5%, the redox potential of NiCo-MOF increased by 85%. Adequate Ce doping can potentially enhance rate capacity dramatically due to the large ion radius that provided an extra space for electrolyte ion shutting channel. 1% Ce-doped NiCo-MOF, having a capacity of 286 mA h g at 2 A g and retaining 93% of its capacity (265 mA h g) at 20 A g, emerged as the best performing material among all the Ce-doped NiCo-MOFs presented in this study. A full cell coupling Ce-doped NiCo-MOF cathode and FeO anode was assembled to verify its practical application. The full cell showed an initial capacity of 280 mA h g at 2 A g and retained 92% after 1000 charge and discharge cycles. Therefore, Ce doping emerges as a powerful strategy for the designing of cathode materials used in advanced alkaline battery.

摘要

在这项工作中,研究了铈(Ce)掺杂的镍钴金属有机框架(NiCo-MOF)作为碱性电池阴极材料的应用。在MOF中用Ce对Ni/Co进行惰性取代可使Ce成为框架骨架的一部分,进而在氧化还原反应期间确保结构稳定性,这极大地提高了充放电循环稳定性。当掺杂剂摩尔分数高达5%时,NiCo-MOF的氧化还原电位提高了85%。由于大离子半径为电解质离子传输通道提供了额外空间,适量的Ce掺杂有可能显著提高倍率性能。1%Ce掺杂的NiCo-MOF在2 A g时容量为286 mA h g,在20 A g时保持其容量(265 mA h g)的93%,成为本研究中所有Ce掺杂的NiCo-MOF中性能最佳的材料。组装了一个耦合Ce掺杂的NiCo-MOF阴极和FeO阳极的全电池以验证其实际应用。该全电池在2 A g时初始容量为280 mA h g,在1000次充放电循环后保持92%。因此,Ce掺杂成为设计先进碱性电池中使用的阴极材料的有力策略。

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