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Effects of HF on the Lithiation Behavior of the Silicon Anode in LiPF6 Organic Electrolyte Solution

机译:HF对LiPF6有机电解质溶液中硅阳极硅锂的影响

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As one of the major impurities in the organic electrolyte, HF can react with the alkali components in the solid electrolyte interphase (SEI), such as lithium alkoxide and lithium carbonate, to form more LiF-rich SEI. Here, the effects of HF on the lithiation behavior of the single crystal Si(111) anode were studied using scanning electron microscopy, soft X-ray emission spectroscopy, and windowless energy-dispersive X-ray spectroscopy. When the Li–Si alloy is formed in 1.0 M LiPF6 in the propylene carbonate solvent, it has a layered structure that contained the first layer of crystalline Li15Si4 (c-Li15Si4) alloy pyramids, the second layer of amorphous Li13Si4 (a-Li13Si4) alloy, and a third layer of Li-diffused LixSi alloy. When the more concentrated HF is in the electrolyte solution, less amount of the c-Li15Si4 alloy is formed in the first layer. It suggests that the Si lithiation can form only amorphous LixSi alloy relative to the components in the electrolytes. The study also explains why only amorphous LixSi alloy formation was observed in some previous studies.
机译:作为有机电解质中的主要杂质之一,HF可以与固体电解质间(SEI)中的碱性组分反应,例如醇锂和碳酸锂,以形成更加富有的LiF富含SEI。这里,使用扫描电子显微镜,软X射线发射光谱和无窗口能量分散X射线光谱研究HF对单晶Si(111)阳极锂锂化行为的影响。当Li-Si合金在碳酸亚丙酯溶剂中形成1.0μmlipf6时,它具有包含第一层晶体Li15Si4(C-Li15Si4)合金金字塔的层状结构,第二层无定形Li13 Si 4(A-Li13Si4)合金,以及第三层Li-扩散利莱合金。当更浓缩的HF处于电解质溶液中时,在第一层中形成少量C-LI15SI4合金。它表明,Si锂化可以仅形成相对于电解质中的组分的无定形利润合金。该研究还解释了为什么在以前的一些研究中观察到非晶利莱合金形成。

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