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首页> 外文期刊>Journal of power sources >ZrO(NO_3)_2 as a functional additive to suppress the diffusion of polysulfides in lithium - Sulfur batteries
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ZrO(NO_3)_2 as a functional additive to suppress the diffusion of polysulfides in lithium - Sulfur batteries

机译:ZrO(NO_3)_2作为功能性添加剂,可抑制多硫化物在锂硫电池中的扩散

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摘要

Lithium sulfur battery is deemed to one of the most hopefully useable and cost-effective options beyond traditional lithium ion batteries. Nevertheless, the intermediates shuttle effect and the instability of the lithium metal anode are still the significance of barriers to the actual application of lithium sulfur battery. In this work, zirconium oxynitrate (ZrO(NO3)(2)), which delivers good thermal stability and little hygroscopicity, is proposed as a dual functional electrolyte additive to ameliorate the electrochemical performance of lithium sulfur batteries. For one thing, the ZrO2+ cations possess a strong affinity to sulfur, which can catalyze the conversion of dissolved polysulfides to Ss. For another, ZrO(NO3)(2) is negatively charged in the ether electrolyte because of the coordination ability of ZrO2+. It displays a strong repulsion to polysulfides which would effectively trap the dissolved polysulfides and prevent the polysulfides from diffusing into the electrolyte phase. Additionally, NO3- anions can be reduced and form a stable passivation film on Li-metal anode, which is beneficial to decrease the reacting activity of Li-metal anode upon polysulfides and stabilizing the surface topography of the Li-metal anode. Ultimately, the ZrO(NO3)(2) electrolyte additive observably enhances the discharge capacity and cycle stability of Lithium sulfur battery.
机译:锂硫电池被认为是超越传统锂离子电池的最有希望的可行和具有成本效益的选择之一。然而,中间体的穿梭效应和锂金属阳极的不稳定性仍然是阻碍锂硫电池实际应用的重要意义。在这项工作中,提出了具有良好的热稳定性和低吸湿性的氧氮化锆(ZrO(NO3)(2))作为双功能电解质添加剂,以改善锂硫电池的电化学性能。一方面,ZrO2 +阳离子对硫具有很强的亲和力,可以催化溶解的多硫化物转化为Ss。另一方面,由于ZrO2 +的配位能力,ZrO(NO3)(2)在醚电解质中带负电。它显示出对多硫化物的强烈排斥力,这将有效地捕获溶解的多硫化物并防止多硫化物扩散到电解质相中。另外,可以还原NO 3-阴离子并在锂金属阳极上形成稳定的钝化膜,这有利于降低锂金属阳极在多硫化物上的反应活性并稳定锂金属阳极的表面形貌。最终,ZrO(NO3)(2)电解质添加剂可明显提高锂硫电池的放电容量和循环稳定性。

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