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Chitosan-grafted-polyaniline copolymer as an electrically conductive and mechanically stable binder for high-performance Si anodes in Li-ion batteries

机译:壳聚糖接枝 - 聚苯胺共聚物作为导电和机械稳定的粘合剂,用于锂离子电池中的高性能Si阳极

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摘要

We developed chitosan-grafted-polyaniline copolymers (CS-g-PANIs) as new water-soluble electrically conductive and mechanically robust polymer binder materials for silicon anodes. Unlike most other electrically conductive polymer binders, the CS-g-PANIs were easily prepared by grafting electrically conductive PANI onto the chitosan, which adheres well to Si. Various CS-g-PANI copolymers were prepared with different grafting degrees of PANI to investigate the effect of PANI on the electrochemical and physical properties of the prepared electrodes. The copolymer whose composition was 50% PANI and 50% chitosan showed the best cell performance, due to the well-balanced electrical conductivity and mechanical properties. It exhibited a specific capacity of 1091 mAh g(-1) at the 200th cycle with 99.4% Coulombic efficiency. (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们开发了用于硅阳极的新水溶性导电和机械稳健的聚合物粘合剂的壳聚糖接枝聚苯胺共聚物(CS-G-PANI)。 与大多数其他导电聚合物粘合剂不同,通过将导电的粉末嫁接到壳聚糖上,容易地制备CS-G-PANI,这粘附良好至Si。 用不同的嫁接程度的PANI制备各种Cs-G-PANI共聚物,以研究PANI对制备电极电化学和物理性质的影响。 由于均衡的导电性和机械性能,其组合物为50%胰腺和50%壳聚糖的共聚物显示出最佳的细胞性能。 它在第200个循环中表现出1091mAhg(-1)的特定容量,库仑效率为99.4%。 (c)2019 Elsevier Ltd.保留所有权利。

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