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Electrochemical performance of silicon thin film anodes covered by diamond-like carbon with various surface coating morphologies

机译:具有各种表面涂层形态的类金刚石碳覆盖的硅薄膜阳极的电化学性能

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摘要

Four different kinds of diamond-like carbon (DLC) coating morphologies on the surface of silicon films were prepared directly on a copper foil by using radio frequency plasma-enhanced chemical vapor deposition at 200°C. A thin double layer film consisting of DLC (60 nm) and silicon film (250 nm) was fabricated for use as the anode material of lithium secondary batteries, and its electrochemical performance was also examined with special attention being paid to the surface coverage of the DLC film. The full coverage of silicon by the DLC film resulted in poor capacity due to the ensuing low reactivity with the lithium ions. On the other hand, the partial coating of the DLC film on the silicon film not only reduced the capacity fading, but also increased the discharge capacity during the charge/discharge cycles. These results indicated that the good dispersion of the DLC coating, obtained by using a smaller coating sector on the silicon film, improved the integrity of the electrode structure, thus giving higher capacities and reduced capacity fading.
机译:通过在200°C下使用射频等离子体增强化学气相沉积法,直接在铜箔上制备了四种不同类型的硅膜表面类金刚石碳(DLC)涂层形态。制作了由DLC(60 nm)和硅膜(250 nm)组成的双层薄膜用作锂二次电池的负极材料,并对其电化学性能进行了研究,并特别注意了其表面覆盖率。 DLC胶卷。由于随之而来的与锂离子的低反应性,DLC膜完全覆盖了硅,导致容量不佳。另一方面,DLC膜在硅膜上的部分涂覆不仅减少了容量衰减,而且还增加了充电/放电循环期间的放电容量。这些结果表明,通过在硅膜上使用较小的涂层扇形而获得的DLC涂层的良好分散性改善了电极结构的完整性,从而提供了更高的容量并降低了容量衰减。

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