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Dihydrophenazine-Derived Redox Polymer from Industrial By-Product as Lithium-ion Battery Cathode Material

机译:二氢苯胺衍生的氧化还原聚合物来自工业副产品,作为锂离子电池阴极材料

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摘要

Advantaged with broad availibility and environmental sustainability,redox-active organic polymers have recently been studied intensively as sustainable cathode materials for rechargeable lithium-ion batteries(LIBs).Other than the inexhaustible biomass,wastes from the contemporary chemical industries are alternative sustainable resources to be explored as electrode materials.Phenazine,a by-product from RT-base industrial with annual yield of about 1,000 tonnes in China,releases about 3,500 tonnes of carbon dioxide per year to the environment when disposed of by burning directly.In this work,a novel phenazine-derived polymer,poly(5-methyl-10-(4-vinylbenzyl)-phenazine)(PVBPZ)featured with a robust redoxactive dihydrophenazine moiety,was achieved through a facile two-pot synthetic procedure and explored as excellent cathode material of LIBs.PVBPZ exhibited robust cycling stability,outstanding rate performance,and high capacity retention(up to 90%)after 300 cycles at 0.2 A g-1.This work provides a feasible way to utilize phenazine as a valuable material,avoiding the release of huge amount of greenhouse gases and contributing to the relief of environmental deterioration.
机译:氧化还原活性有机聚合物的优势已得到广泛的可用性和环境可持续性,最近已对可持续可充电锂离子电池(LIB)进行了深入研究,比不可避免的生物量(LIBS)。作为电极材料探索。苯丙胺是中国RT基碱工业的副产品,在中国大约1,000吨,每年通过直接燃烧处置时,每年向环境释放约3500吨二氧化碳。新型苯嗪衍生的聚合物,Poly(5-甲基-10-(4-乙烯基苯甲酰苯) - 苯胺)(PVBPZ),具有强大的氧化二氢苯丙胺部分,是通过便捷的两柱合成过程来实现的,并作为优秀的天主材料探索libs.pvbpz表现出强大的骑自行车稳定性,出色的速率性能和高容量保留率(在0.2 a g-1时300个循环后,高达90%)。这项工作专业避免利用苯嗪作为宝贵材料的可行方式,避免释放大量的温室气体,并有助于缓解环境恶化。

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