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Anthracene based organodisulfide positive active materials for lithium secondary battery

机译:蒽基锂二次电池用有机二硫化物正极活性物质

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摘要

From facile preparation method and available low-cost raw materials, we have synthesized a novel kind of organodisulfide cathode materials based on anthracene for lithium secondary batteries-anthra[1',9',8'-b,c,d,e][4',5'-b',c',d',e']bis-[1,6,6a(6a-S~(IV))-trithia]pentalene (ABTH) and its homopolymer (PABTH), investigated the application of the organodisulfides to positive active material for lithium secondary batteries. The organodisulfides were characterized by FT-IR, XPS, and elemental analysis. The cyclic voltammetry tests reveal that the redox reaction of the ABTHs was processed in two steps. The experimental results showed that the polymer has the specific capacity of 300 mAh/g at second cycle and 250 mAh/g at the fifth cycle.
机译:通过简便的制备方法和可用的低成本原料,我们合成了一种基于蒽的新型锂有机二次电池正极材料-蒽[1',9',8'-b,c,d,e] [研究了4',5'-b',c',d',e']双-[1,6,6a(6a-S〜(IV))-三硫]戊烯(ABTH)及其均聚物(PABTH)有机二硫化物在锂二次电池正极活性材料中的应用。通过FT-IR,XPS和元素分析对有机二硫化物进行了表征。循环伏安法测试表明ABTH的氧化还原反应分两个步骤进行。实验结果表明,该聚合物在第二循环的比容量为300mAh / g,在第五循环的比容量为250mAh / g。

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