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首页> 外文期刊>Science Advances >Ultrathin conformal polycyclosiloxane films to improve silicon cycling stability
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Ultrathin conformal polycyclosiloxane films to improve silicon cycling stability

机译:超薄保形聚环硅氧烷薄膜可提高硅循环稳定性

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Electrochemical reduction of lithium ion battery electrolyte on Si anodes was mitigated by synthesizing nanoscale, conformal polymer films as artificial solid electrolyte interface (SEI) layers. Initiated chemical vapor deposition (iCVD) was used to deposit poly(1,3,5,7-tetravinyl-1,3,5,7-tetramethylcyclotetrasiloxane) (pV4D4) onto silicon thin film electrodes. pV4D4 films (25 nm) on Si electrodes improved initial coulombic efficiency by 12.9% and capacity retention over 100 cycles by 64.9% relative to untreated electrodes. pV4D4 coatings improved rate capabilities, enabling higher lithiation capacity at all current densities. Impedance spectroscopy showed that SEI resistance grew from 50 to 191 ohms in untreated Si and only 34 to 90 ohms in pV4D4-coated Si over 30 cycles. Post-cycling Fourier transform infrared and x-ray photoelectron spectroscopy showed that pV4D4 moderated electrolyte reduction and altered SEI composition, with LiF formation being favored. This work will guide further development of polymeric artificial SEIs to mitigate electrolyte reduction and enhance capacity retention in Si electrodes.
机译:通过合成作为人工固体电解质界面(SEI)层的纳米级保形聚合物膜,可以减轻锂离子电池在硅阳极上的电化学还原反应。使用起始化学气相沉积(iCVD)将聚(1,3,5,7-四乙烯基-1,3,5,7-四甲基环四硅氧烷)(pV4D4)沉积到硅薄膜电极上。与未经处理的电极相比,Si电极上的pV4D4膜(25 nm)将初始库仑效率提高了12.9%,在100个循环中的容量保持率提高了64.9%。 pV4D4涂层提高了倍率性能,在所有电流密度下均具有更高的锂化能力。阻抗谱显示,在30个循环中,未经处理的Si的SEI电阻从50欧姆增加到191欧姆,而在pV4D4涂层的Si中,SEI电阻只有34到90欧姆。循环后傅里叶变换红外和X射线光电子能谱显示pV4D4可以减缓电解质的还原并改变SEI的组成,其中LiF的形成受到青睐。这项工作将指导聚合物人工SEI的进一步开发,以减轻电解质的减少并增强Si电极的容量保持能力。

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