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首页> 外文期刊>Applied Surface Science >Lithiation of the crystalline silicon as analyzed using soft X-ray emission spectroscopy and windowless energy dispersive X-ray spectroscopy
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Lithiation of the crystalline silicon as analyzed using soft X-ray emission spectroscopy and windowless energy dispersive X-ray spectroscopy

机译:使用软X射线发射光谱和无窗口能量分散X射线光谱分析结晶硅的锂化

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摘要

There is no clear consensus on the exact compounds that are generated during the room temperature lithiation of Si, which may include amorphous LixSi or a crystalline Li15Si4 alloy. Here, the lithiation behavior of a single-crystal Si(1 1 1) anode was studied using scanning electron microscopy (SEM), soft X-ray emission spectroscopy (SEXS), and windowless energy dispersive X-ray spectroscopy (EDS). A Li-Si alloy generated electrochemically via potentiostatic lithiation was found to have a layered structure that contained the 1st layer of crystalline Li15Si4 (c-Li15Si4) alloy pyramids, the 2nd layer of amorphous Li13Si4 (a-Li13Si4) alloy, and the 3rd layer of Li-diffused LixSi alloy. A maximum cathodic current appeared during this process, and both the c-Li15Si4 and Li-diffused LixSi alloys were observed to grow during the initial lithiation and to maintain almost constant thicknesses prior to reaching the maximum current, while the 2nd layer began to grow after the maximum current. Comparing the experimental and theoretical currents showed that the lithiation of crystalline Si is diffusion-controlled. The low Li diffusion coefficients in the bulk LixSi alloy and bulk Si evidently result in a low current density during Si lithiation.
机译:在室温锂化的Si期间产生的精确化合物没有明确的共识,其可包括无定形Lixsi或结晶Li 15 Si 4合金。这里,使用扫描电子显微镜(SEM),软X射线发射光谱(SEX)和无窗口能量分散X射线光谱(EDS)研究单晶Si(111)阳极的锂化行为。发现通过电位锂化的电化学产生的Li-Si合金具有含有第1层晶体Li 15 Si 4(C-Li15Si 4)合金金字塔的层状结构,第二层无定形Li13 Si 4(A-Li13 Si 4)合金,以及第3层锂散射丽克斯合金。在该方法期间出现的最大阴极电流,并且观察到C-Li15Si4和Li-扩散的Lixsi合金在初始锂化期间生长,并且在达到最大电流之前保持几乎恒定的厚度,而第二层开始生长最大电流。比较实验和理论电流表明结晶Si的锂化是扩散控制的。在Si锂化期间,散装Lixsi合金和散装Si中的低LI扩散系数明显导致电流密度低。

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