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Lithium-Ion Insertion Properties of Solution Exfoliated Germanane

机译:溶液脱色锗的锂离子插入性能

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摘要

The high theoretical energy density of alloyed lithium and germanium (Li15Ge4), 1384 mAh/g, makes germanium a promising anode material for lithium-ion batteries. However, common alloy anode architectures suffer from long-term instability upon repetitive charge-discharge cycles that arise from stress-induced degradation upon lithiation (volume expansion >300%). Here, we explore the use of the two-dimensional nanosheet structure of germanane to mitigate stress from high volume expansion and present a facile method for producing stable single-to-multisheet dispersions of pure germanane. Purity and degree of exfoliation were assessed with scanning electron microscopy, transmission electron microscopy, and Raman spectroscopy. We measured representative germanane battery electrodes to have a reversible Li-ion capacity of 1108 mAh/g when cycled between 0.1 and 2 V vs Li/Li+. These results indicate germanane anodes are capable of near-theoretical-maximum energy storage, perform well at high cycling rates, and can maintain capacity over 100 cycles.
机译:合金锂和锗(Li15ge4),1384mAh / g的高理论能量密度使锗成为锂离子电池的有前途的阳极材料。然而,普通合金阳极架构在重复的电荷 - 放电循环时患有长期不稳定性,所述电荷放电循环在锂锂化上的应力诱导的降解(体积膨胀> 300%)中产生。在这里,我们探讨了锗的二维纳米片结构的使用,从高容量扩张中减轻应力,并提出了一种生产纯锗的稳定单对多次分散体的构图。用扫描电子显微镜,透射电子显微镜和拉曼光谱评估纯度和剥离程度。我们测量代表性的锗电池电极在循环在0.1和2V Vs Li / Li +之间的循环之间具有可逆锂离子容量为1108mAh / g。这些结果表明,锗阳极能够近乎理论最大的能量储存,在高循环速率下表现良好,并且可以保持超过100个循环的容量。

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