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Nitrogen-doped carbon nanotubes coated with zinc oxide nanoparticles as sulfur encapsulator for high-performance lithium/sulfur batteries

机译:涂有氧化锌纳米粒子的掺氮碳纳米管作为高性能锂/硫电池的硫封装剂

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摘要

Nitrogen-doped carbon nanotubes coated with zinc oxide nanoparticles (ZnO@NCNT) were prepared via a sol–gel route as sulfur encapsulator for lithium/sulfur (Li/S) batteries. The electrochemical properties of the S/ZnO@NCNT composite cathode were evaluated in Li/S batteries. It delivered an initial capacity of 1032 mAh·g−1 at a charge/discharge rate of 0.2C and maintained a reversible capacity of 665 mAh·g−1 after 100 cycles. The coulombic efficiency of the cathode remains unchanged above 99%, showing stable cycling performance. X-ray photoelectron spectroscopy analysis confirmed the formation of S–Zn and S–O bonds in the composite. This indicates that an enhanced cycling and rate capability of the S/ZnO@NCNT composite could be ascribed to advantages of the ZnO@NCNT matrix. In the composite, the active ZnO-rich surfaces offer a high sulfur-bonding capability and the NCNT core acts as a conductive framework providing pathways for ion and electron transport. The as-prepared S/ZnO@NCNT composite is a promising cathode material for Li/S batteries.
机译:涂有氧化锌纳米颗粒(ZnO @ NCNT)的掺氮碳纳米管是通过溶胶-凝胶法制备的,用作锂/硫(Li / S)电池的硫封装剂。在Li / S电池中评估了S / ZnO @ NCNT复合阴极的电化学性能。它在0.2C的充放电速率下提供了1032 mAh·g -1 的初始容量,并在100次循环后保持了665 mAh·g -1 的可逆容量。 。阴极的库仑效率在99%以上保持不变,显示出稳定的循环性能。 X射线光电子能谱分析证实了复合物中S–Zn和S–O键的形成。这表明,S / ZnO @ NCNT复合材料的增强的循环和速率能力可以归因于ZnO @ NCNT基体的优点。在复合材料中,富含ZnO的活性表面具有很高的硫键结合能力,而NCNT核充当导电框架,为离子和电子的传输提供了途径。所制备的S / ZnO @ NCNT复合材料是用于Li / S电池的有希望的正极材料。

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