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The polymerization and electrochemical characterization of polypyrrole and polypyrrole/poly(ethylene oxide)pyrrole copolymers.

机译:聚吡咯和聚吡咯/聚(环氧乙烷)吡咯共聚物的聚合和电化学表征。

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The work contained within this document discusses the polymerization and subsequent characterization of Polypyrrole based electrodes for lithium batteries. Polypyrrole and Polypyrrole/polyethyloxy copolymers were compared and contrasted in an attempt to show the superior kinetics of the copolymer electrode. It was found that the diffusion of dopant ions across the electrode and electrolyte interface was increased by on order of magnitude in the copolymer sample. It was also found that the reversibility of the Polypyrrole electrode was greater than that of the copolymer electrode. While the diffusion coefficient of the copolymer electrode was altered to be comparable to that of the transition metal oxide cathodes in production today, the capacity of the copolymer material is still too low to be considered as an alternative cathode material in the lithium battery industry.
机译:该文件中包含的工作讨论了用于锂电池的基于聚吡咯的电极的聚合和随后的表征。对聚吡咯和聚吡咯/聚乙氧基共聚物进行了比较和对比,以显示共聚物电极的优异动力学。发现在共聚物样品中,掺杂剂离子在电极和电解质界面上的扩散增加了数量级。还发现聚吡咯电极的可逆性大于共聚物电极的可逆性。尽管已将共聚物电极的扩散系数更改为与当今生产中的过渡金属氧化物阴极相当,但共聚物材料的容量仍然过低,无法视为锂电池行业中的替代阴极材料。

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