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Carbon nanotubes (CNTs) as a buffer layer In silicon/CNTs composite electrodes for lithium secondary batteries

机译:碳纳米管(CNTs)作为缓冲层在锂二次电池的硅/ CNTs复合电极中

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摘要

A core/shell type silicon/carbon nanotubes (Si/CNTs) composite is prepared and its anodic performance in lithium secondary batteries is examined. For the growth of CNTs, a Ni catalyst is loaded on a Si surface by electroless deposition. The growth is performed by chemical vapour deposition at 600 deg C using C_2H_2/H_2 but is successful only on smaller and thinner Ni deposits. This is probably due to an easier transformation to small droplets that initiate the growth reaction. The anodic performance of a Si/CNTs composite electrode is superior to that observed with bare Si and Si/CNTs mixed electrodes. This beneficial feature is ascribed to the conductive buffering role of the CNTs layer. It is likely that the void space and the flexible characteristics in the CNTs buffer layer on the Si surface allow volume expansion of the Si core without severe electrode swelling. Because of this, the electric conductive network made among Si particles, carbon network and current-collector is well maintained, which reduces the charge-transfer resistance.
机译:制备核/壳型硅/碳纳米管(Si / CNT)复合材料,并研究其在锂二次电池中的阳极性能。为了生长CNT,通过无电沉积将Ni催化剂负载在Si表面上。使用C_2H_2 / H_2通过在600摄氏度下化学气相沉积进行生长,但是仅在较小和较薄的Ni沉积层上才成功。这可能是由于更容易转化为引发生长反应的小液滴。 Si / CNTs复合电极的阳极性能优于裸Si和Si / CNTs混合电极的阳极性能。该有益特征归因于CNT层的导电缓冲作用。 Si表面上的CNTs缓冲层中的空隙空间和柔性特性可能允许Si芯的体积膨胀而没有严重的电极膨胀。因此,良好地保持了由Si颗粒,碳网络和集电器构成的导电网络,这降低了电荷转移电阻。

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