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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Supramolecular Perylene Bisimide-Polysulfide Gel Networks as Nanostructured Redox Mediators in Dissolved Polysulfide Lithium-Sulfur Batteries
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Supramolecular Perylene Bisimide-Polysulfide Gel Networks as Nanostructured Redox Mediators in Dissolved Polysulfide Lithium-Sulfur Batteries

机译:超分子Per双酰亚胺-聚硫化物凝胶网络作为溶解多硫化锂-硫电池中的纳米结构氧化还原介体

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摘要

Here we report a new redox-active perylene bisimide (PBI)-polysulfide (PS) gel that overcomes electronic charge-transport bottlenecks common to lithium-sulfur (Li-S) hybrid redox flow batteries designed for long-duration grid-scale energy storage applications. PBI was identified as a supramolecular redox mediator for soluble lithium polysulfides from a library of 85 polycyclic aromatic hydrocarbons by using a high-throughput computational platform; furthermore, these theoretical predictions were validated electrochemically. Challenging conventional wisdom, we found that pi-stacked PBI assemblies were stable even in their reduced state through secondary interactions between PBI nanofibers and Li2Sn, which resulted in a redoxactive, flowable 3-D gel network. The influence of supramolecular charge-transporting PBI-PS gel networks on Li-S battery performance was investigated in depth and revealed enhanced sulfur utilization and rate performance (C/4 and C/8) at a sulfur loading of 4 mg cm(-2) and energy density of 44 Wh L-1 in the absence of conductive carbon additives.
机译:在这里,我们报告了一种新型的氧化还原活性per双酰亚胺(PBI)-聚硫化物(PS)凝胶,该凝胶克服了锂-硫(Li-S)混合氧化还原液流电池常见的电子电荷传输瓶颈,该电池设计用于长时间的电网规模储能应用程序。通过使用高通量计算平台,从85种多环芳烃的库中将PBI鉴定为可溶性多硫化锂的超分子氧化还原介体;此外,这些理论预测得到了电化学验证。挑战传统观点,我们发现pi堆叠的PBI组件即使通过PBI纳米纤维与Li2Sn之间的二次相互作用,即使在还原状态下也能保持稳定,从而形成了具有氧化还原活性,可流动的3-D凝胶网络。深入研究了超分子电荷传输PBI-PS凝胶网络对Li-S电池性能的影响,发现在4 mg cm(-2)的硫负荷下,硫的利用率和速率性能(C / 4和C / 8)增强。 )和44 Wh L-1的能量密度(在没有导电碳添加剂的情况下)。

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