...
首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Self-assembled growth of Sn@CNTs on vertically aligned graphene for binder-free high Li-storage and excellent stability
【24h】

Self-assembled growth of Sn@CNTs on vertically aligned graphene for binder-free high Li-storage and excellent stability

机译:Sn @ CNTs在垂直排列的石墨烯上的自组装生长,以实现无粘结剂的高锂存储和出色的稳定性

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Although widely used, the current Li-ion battery (LIB) technology still suffers from a lack of suitable electrodes with enhanced energy and power density, cycling stability, energy efficiency and cycling life. As an anode material for LIBs, metallic tin (Sn) has attracted tremendous interest, owing to its high theoretical capacity. Nevertheless, the practical implementation of metallic tin to LIBs is greatly hampered by the poor cyclability, because volume changes that occur during charging and discharging, result in both mechanical failure and loss of electrical contact at the electrode and the tin nanoparticle aggregates during the discharging process. Here, we report for the first time, a new strategy to grow self-assembled Sn@CNT on vertically aligned graphene (VAGN) by the microwave plasma irradiation reduction of SnO2 growth on VAGN and in situ encapsulating all the Sn nanoparticles in CNTs. The composite, as an anode material in lithium ion batteries, exhibits a high reversible capacity of 1026 mA h g~(-1) at 0.25 C (cycle lives of more than 280 times) and a capacity of 140 mA h g~(-1) is retained in a discharge time of 12 s, which represents the best performance values attained for a Sn anode to date. We expect the proposed route to be adopted by the rapidly growing energy storage research community.
机译:尽管被广泛使用,但是当前的锂离子电池(LIB)技术仍然缺乏合适的电极,这些电极具有增强的能量和功率密度,循环稳定性,能量效率和循环寿命。作为LIB的负极材料,金属锡(Sn)由于其高理论容量而引起了极大的兴趣。但是,由于锡的可循环性差,大大阻碍了金属锡到LIB的实际实施,因为在充电和放电过程中发生体积变化,导致机械故障以及放电过程中电极和锡纳米粒子聚集体的电接触损失。在这里,我们首次报告了一种新的策略,该策略是通过微波等离子体辐照减少VAGN上SnO2的生长并将所有Sn纳米颗粒原位封装在CNT中,从而在垂直排列的石墨烯(VAGN)上生长自组装Sn @ CNT。该复合材料作为锂离子电池的负极材料,在0.25 C下具有1026 mA hg〜(-1)的高可逆容量(循环寿命超过280次),容量为140 mA hg〜(-1)。保留的放电时间为12 s,这代表了迄今为止Sn阳极获得的最佳性能值。我们预计拟议的路线将被迅速发展的储能研究界所采用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号