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ZnO quantum dot-modified rGO with enhanced electrochemical performance for lithium–sulfur batteries

机译:ZnO量子DOT改性RGO,具有增强的锂 - 硫电池电化学性能

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摘要

Lithium–sulfur batteries are considered the most promising next-generation energy storage devices. However, problems like sluggish reaction kinetics and severe shuttle effect need to be solved before the commercialization of Li–S batteries. Here, we successfully prepared ZnO quantum dot-modified reduced graphene oxide (rGO@ZnO QDs), and first introduced it into Li–S cathodes (rGO@ZnO QDs/S). Due to its merits of a catalysis effect and enhancing the reaction kinetics, low surface impedance, and efficient adsorption of polysulfide, rGO@ZnO QDs/S presented excellent rate capacity with clear discharge plateaus even at a high rate of 4C, and superb cycle performance. An initial discharge capacity of 998.8 mA h g ~(?1) was delivered, of which 73.3% was retained after 400 cycles at a high rate of 1C. This work provides a new concept to introduce quantum dots into lithium–sulfur cathodes to realize better electrochemical performance.
机译:锂 - 硫磺电池被认为是最有前途的下一代储能设备。然而,在Li-S电池商业化之前,需要解决像缓慢的反应动力学和严重穿梭效果。在这里,我们成功地制备了ZnO量子点改性的石墨烯氧化物(RGO @ ZnO QD),并首先将其引入Li-S阴极(RGO @ ZnO QDS / s)。由于其催化作用的优点,增强了反应动力学,低表面阻抗和高效吸附多硫化物,RGO @ ZnO QDS / S甚至以高速4C的速率清晰的排出平台呈现出优异的速率容量,以及极好的循环性能。递送初始放电容量为998.8 mA H G〜(α1),其中400次循环以高速率为1℃,保留73.3%。这项工作提供了一种新概念,将量子点引入锂 - 硫阴极以实现更好的电化学性能。

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