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Perylene-Based All-Organic Redox Battery with Excellent Cycling Stability

机译:基于Excellent的全有机氧化还原电池,具有出色的循环稳定性

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摘要

Organic materials derived from biomass can constitute a viable option as replacements for inorganic materials in lithium-ion battery electrodes owing to their low production costs, recyclability, and structural diversity. Among them, conjugated carbonyls have become the most promising type of organic electrode material as they present high theoretical capacity, fast reaction kinetics, and quasi-infinite structural diversity. In this letter, we report a new perylene-based all-organic redox battery comprising two aromatic conjugated carbonyl electrode materials, the prelithiated tetra-lithium perylene-3,4,9,10-tetracarboxylate (PTCLi6) as negative electrode material and the poly(N-n-hexy1-3,4,9,10-perylene tetracarboxylic)imide (PTCI) as positive electrode material. The resulting battery shows promising long-term cycling stability up to 200 cycles. In view of the enhanced cycling performances, the two organic materials studied herein are proposed as suitable candidates for the development of new all-organic lithium-ion batteries.
机译:源自生物质的有机材料由于其较低的生产成本,可回收性和结构多样性,可以替代锂离子电池电极中的无机材料,是一种可行的选择。其中,共轭羰基化合物具有较高的理论容量,快速的反应动力学和准无限的结构多样性,已成为最有希望的有机电极材料。在这封信中,我们报告了一种新的基于per的全有机氧化还原电池,该电池包含两种芳族共轭羰基电极材料,即作为负极材料的预锂化的per锂-3,4,9,10-四羧酸盐(PTCLi6)和聚(Nn-己基1-3,4,9,10-per四羧酸)酰亚胺(PTCI)作为正极材料。所得电池显示出有希望的高达200次循环的长期循环稳定性。考虑到增强的循环性能,提出了本文研究的两种有机材料作为开发新的全有机锂离子电池的合适候选者。

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