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具有增强的锂存储性能的分级多孔锗改性碳材料。

Hierarchically porous germanium-modified carbon materials with enhanced lithium storage performance.

机构信息

Key Laboratory of Cluster Science, Ministry of Education of China, Department of Chemistry, Beijing Institute of Technology, Beijing 100081, PR China.

出版信息

Nanoscale. 2012 Dec 7;4(23):7469-74. doi: 10.1039/c2nr31533e.

Abstract

In this work, hierarchically porous germanium-modified carbon materials (C/Ge) have been successfully synthesized by a facile hydrothermal method followed with a subsequent annealing treatment. The C/Ge nanocomposites have a unique hierarchically microporous-mesoporous structure, with a surface area of 331 m(2) g(-1). The C/Ge composites exhibit improved capacity, cycling performance and rate capability when used as an anode material, compared with the unmodified carbon and commercial germanium. This superior electrochemical performance could be ascribed to two points. On the one hand, such a hierarchically porous carbon would be beneficial to store and insert the lithium, and therefore the pore-transport system would allow the accessibility of those sites by lithium ions. At the same time, the carbon layers can effectively increase the electrode conductivity, and serve as a buffer to accommodate the volume changes of electrode materials during cycling. On the other hand, the Ge also contributes to the enhancement of the capacity of the carbon spheres since Ge is also a promising anode material with large theoretical specific capacity (ca. 1400 mA h g(-1)) for lithium-ion batteries.

摘要

在这项工作中,通过简便的水热法随后进行退火处理,成功合成了具有分级多孔结构的锗修饰碳材料(C/Ge)。C/Ge 纳米复合材料具有独特的分级微孔-介孔结构,比表面积为 331 m2/g。与未修饰的碳和商业锗相比,C/Ge 复合材料用作阳极材料时具有改善的容量、循环性能和倍率性能。这种优越的电化学性能可以归因于两点。一方面,这种分级多孔碳有利于存储和插入锂离子,因此,孔隙传输系统可以使锂离子能够到达这些位置。同时,碳层可以有效地增加电极的导电性,并作为缓冲层来适应电极材料在循环过程中的体积变化。另一方面,由于锗的理论比容量(约 1400 mA h/g)也很高,是锂离子电池有前途的阳极材料,因此它也有助于提高碳球的容量。

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