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Molecular Spring Enabled High-Performance Anode for Lithium Ion Batteries

机译:锂离子电池的分子弹簧启用高性能阳极

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摘要

Flexible butyl interconnection segments are synthetically incorporated into an electronically conductive poly(pyrene methacrylate) homopolymer and its copolymer. The insertion of butyl segment makes the pyrene polymer more flexible, and can better accommodate deformation. This new class of flexible and conductive polymers can be used as a polymer binder and adhesive to facilitate the electrochemical performance of a silicon/graphene composite anode material for lithium ion battery application. They act like a “spring” to maintain the electrode mechanical and electrical integrity. High mass loading and high areal capacity, which are critical design requirements of high energy batteries, have been achieved in the electrodes composed of the novel binders and silicon/graphene composite material. A remarkable area capacity of over 5 mAh/cm2 and volumetric capacity of over 1700 Ah/L have been reached at a high current rate of 333 mA/g.
机译:柔性丁基互连链段被合成地结合到导电聚甲基丙烯酸py均聚物及其共聚物中。丁基链段的插入使the聚合物更具柔韧性,并能更好地适应变形。这类新的柔性和导电聚合物可用作聚合物粘合剂和粘合剂,以促进锂离子电池应用中硅/石墨烯复合负极材料的电化学性能。它们就像一个“弹簧”,可以维持电极的机械和电气完整性。在由新型粘合剂和硅/石墨烯复合材料组成的电极中已经实现了高质量负载和高面容量,这是高能量电池的关键设计要求。在333 mA / g的高电流速率下,已经实现了超过5 mAh / cm 2 的显着面积容量和超过1700 Ah / L的体积容量。

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