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源自金属有机框架的多孔钴锰氧化物纳米立方体作为可充电锂氧电池的阴极催化剂。

Porous cobalt-manganese oxide nanocubes derived from metal organic frameworks as a cathode catalyst for rechargeable Li-O2 batteries.

作者信息

Zhang Jian, Wang Liangjun, Xu Leilei, Ge Xiaoming, Zhao Xiao, Lai Min, Liu Zhaolin, Chen Wei

机构信息

School of Physics and Optoelectronic Engineering, Nanjing University of Information Science & Technology, Nanjing 210044, Jiangsu, China.

出版信息

Nanoscale. 2015 Jan 14;7(2):720-6. doi: 10.1039/c4nr05865h.

Abstract

The development of cathode catalysts with a porous structure is essential to design Li-O2 batteries with a high rate performance and good cycle stability. Herein, spinel-type porous cobalt-manganese oxide (Co-Mn-O) nanocubes derived from metal organic frameworks were employed as an electrocatalyst in a Li-O2 battery. The battery with the porous Co-Mn-O nanocubes electrode showed a low overpotential and enhanced capacity. The synergistic effects of large specific surface area, porous structure, and the high electrocatalytic activity of the porous Co-Mn-O nanocubes electrode endowed the Li-O2 battery with a good rate performance and excellent cycle stability up to 100 cycles.

摘要

开发具有多孔结构的阴极催化剂对于设计具有高倍率性能和良好循环稳定性的锂氧电池至关重要。在此,源自金属有机框架的尖晶石型多孔钴锰氧化物(Co-Mn-O)纳米立方体被用作锂氧电池中的电催化剂。具有多孔Co-Mn-O纳米立方体电极的电池表现出低过电位和增强的容量。多孔Co-Mn-O纳米立方体电极的大比表面积、多孔结构和高电催化活性的协同效应赋予锂氧电池良好的倍率性能和高达100次循环的优异循环稳定性。

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