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探究锗碳纳米管储能系统中锂锗化物的相演变和结构变化。

Probing lithium germanide phase evolution and structural change in a germanium-in-carbon nanotube energy storage system.

机构信息

Department of Chemistry and Graphene Research Centre, National University of Singapore , 3 Science Drive 3, Singapore 117543.

出版信息

J Am Chem Soc. 2015 Feb 25;137(7):2600-7. doi: 10.1021/ja5116259. Epub 2015 Feb 16.

Abstract

Lithium alloys of group IV elements such as silicon and germanium are attractive candidates for use as anodes in high-energy-density lithium-ion batteries. However, the poor capacity retention arising from volume swing during lithium cycling restricts their widespread application. Herein, we report high reversible capacity and superior rate capability from core-shell structure consisting of germanium nanorods embedded in multiwall carbon nanotubes. To understand how the core-shell structure helps to mitigate volume swings and buffer against mechanical instability, transmission electron microscopy, X-ray diffraction, and in situ (7)Li nuclear magnetic resonance were used to probe the structural rearrangements and phase evolution of various Li-Ge alloy phases during (de)alloying reactions with lithium. The results provide insights into amorphous-to-crystalline transition and lithium germanide alloy phase transformation, which are important reactions controlling performance in this system.

摘要

IV 族元素(如硅和锗)的锂合金是作为高能密度锂离子电池阳极的有吸引力的候选材料。然而,在锂循环过程中由于体积摆动导致的容量保持率差限制了它们的广泛应用。在此,我们报告了由嵌入多壁碳纳米管中的锗纳米棒组成的核壳结构具有高可逆容量和优异的倍率性能。为了了解核壳结构如何有助于缓解体积摆动和缓冲机械不稳定性,使用透射电子显微镜、X 射线衍射和原位(7)Li 核磁共振来探测各种 Li-Ge 合金相在与锂的(脱)合金反应过程中的结构重排和相演变。结果提供了对非晶态到晶态转变和锂锗化物合金相转变的深入了解,这是控制该体系性能的重要反应。

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