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Amorphous silicon-carbon based nano-scale thin film anode materials for lithium ion batteries

机译:锂离子电池用非晶硅碳基纳米薄膜负极材料

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摘要

The buffering effect of carbon on the structural stability of amorphous silicon films, used as an anode for lithium ion rechargeable batteries, has been studied during long term discharge/charge cycles. To this extent, the electrochemical performance of a prototype material consisting of amorphous Si thin film (~250 nm) deposited by radio frequency magnetron sputtering on amorphous carbon (~50 nm) thin films, denoted as a-C/Si, has been investigated. In comparison to pure amorphous Si thin film (a-Si) which shows a rapid fade in capacity after 30 cycles, the a-C/Si exhibits excellent capacity retention displaying ~0.03% fade in capacity up to 50 cycles and ~0.2% after 50 cycles when cycled at a rate of 100 μA/cm~2 (~C/2) suggesting that the presence of thin amorphous C layer deposited between the Cu substrate and a-Si acts as a buffer layer facilitating the release of the volume induced stresses exhibited by pure a-Si during the charge/discharge cycles. This structural integrity combined with microstructural stability of the a-C/Si thin film during the alloying/dealloying process with lithium has been confirmed by scanning electron microscopy (SEM) analysis. The buffering capacity of the thin amorphous carbon layer lends credence to its use as the likely compliant matrix to curtail the volume expansion related cracking of silicon validating its choice as the matrix for bulk and thin film battery systems.
机译:在长期的放电/充电循环中,已经研究了碳对用作锂离子可充电电池阳极的非晶硅膜的结构稳定性的缓冲作用。在此程度上,已经研究了由射频磁控溅射沉积在非晶碳(〜50 nm)薄膜上的非晶硅薄膜(〜250 nm)组成的原型材料的电化学性能,表示为a-C / Si。与纯非晶硅薄膜(a-Si)在30个循环后显示出快速的容量衰减相比,aC / Si具有优异的容量保持率,在50个循环中显示出约0.03%的容量衰减,在50个循环之后显示出约0.2%的容量。当以100μA/ cm〜2(〜C / 2)的速率循环时,表明在Cu衬底和a-Si之间沉积的非晶C薄层充当缓冲层,有助于释放所显示的体积感应应力在充电/放电周期中由纯a-Si产生。通过扫描电子显微镜(SEM)分析已证实,在与锂合金化/脱合金过程中,这种结构完整性与a-C / Si薄膜的微观结构稳定性相结合。非晶态碳薄层的缓冲能力证明了其作为可能的顺应性基体的使用,以减少与硅体积膨胀相关的龟裂,从而验证了其作为大容量和薄膜电池系统基体的选择。

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