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Unique urchin-like Ca2Ge7O16 hierarchical hollow microspheres as anode material for the lithium ion battery

机译:独特的类似海胆的Ca2Ge7O16分层中空微球作为锂离子电池的负极材料

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摘要

Germanium is an outstanding anode material in terms of electrochemical performance, especially rate capability, but its developments are hindered by its high price because it is rare in the crust of earth, and its huge volume variation during the lithium insertion and extraction. Introducing other cheaper elements into the germanium-based material is an efficient way to dilute the high price, but normally sacrifice its electrochemical performance. By the combination of nanostructure design and cheap element (calcium) introduction, urchin-like Ca2Ge7O16 hierarchical hollow microspheres have been successfully developed in order to reduce the price and maintain the good electrochemical properties of germanium-based material. The electrochemical test results in different electrolytes show that ethylene carbonate/dimethyl carbonate/diethyl carbonate (3/4/3 by volume) with 5 wt% fluoroethylene carbonate additive is the most suitable solvent for the electrolyte. From the electrochemical evaluation, the as-synthesized Ca2Ge7O16 hollow microspheres exhibit high reversible specific capacity of up to 804.6 mA h g−1 at a current density of 100 mA g−1 after 100 cycles and remarkable rate capability of 341.3 mA h g−1 at a current density of 4 A g−1. The growth mechanism is proposed based on our experimental results on the growth process.
机译:就电化学性能而言,锗是一种出色的阳极材料,特别是在倍率性能方面,但由于其价格昂贵而受到阻碍,因为它在地壳中很少见,并且在锂的插入和提取过程中其体积变化很大。在锗基材料中引入其他更便宜的元素是稀释高价的有效方法,但通常会牺牲其电化学性能。通过将纳米结构设计和廉价的元素(钙)引入相结合,成功开发出了类似Urchin的Ca2Ge7O16分级空心微球,以降低价格并保持锗基材料的良好电化学性能。在不同电解质中的电化学测试结果表明,碳酸亚乙酯/碳酸二甲酯/碳酸二乙酯(体积比为3/4/3)和5 wt%的碳酸氟代亚乙酯添加剂是最适合该电解质的溶剂。根据电化学评估,经过100次循环后,合成的Ca2Ge7O16中空微球在100 densitymA g-1的电流密度下具有高达804.6 mA h g-1的高可逆比容量,并具有341.3 mA h g-1的显着速率能力在4 A g-1的电流密度下。根据我们对生长过程的实验结果,提出了生长机理。

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