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首页> 外文期刊>Journal of power sources >Electrochemical intercalation of lithium into polypyrrole/silver vanadium oxide composite used for lithium primary batteries
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Electrochemical intercalation of lithium into polypyrrole/silver vanadium oxide composite used for lithium primary batteries

机译:锂在锂一次电池用聚吡咯/银钒氧化物复合材料中的电化学嵌入

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摘要

Hybrid composites of polypyrrole (PPy) and silver vanadium oxide (SVO) used for lithium primary batteries were chemically synthesized by an oxidative polymerization of pyrrole monomer on the SVO surface in an acidic medium. The composite electrode exhibited higher discharge capacity and better rate capability as compared with the pristine SVO electrode. The improvement in electrochemical performance of the composite electrode was due to PPy which accommodates lithium ions and also enhances the SVO utilization. Chronoamperometric and ac-impedance measurements indicated that lithium intercalation proceeds under the mixed control by interfacial charge transfer and diffusion. The enhanced SVO utilization in the composite electrode results from a facilitated kinetics of interfacial charge transfer in the presence of PPy.
机译:通过在酸性介质中,吡咯单体在SVO表面上进行氧化聚合,化学合成了用于锂一次电池的聚吡咯(PPy)和银钒氧化物(SVO)的杂化复合材料。与原始SVO电极相比,复合电极具有更高的放电容量和更好的倍率性能。复合电极的电化学性能的改善归因于PPy能够容纳锂离子并提高SVO利用率。计时安培和交流阻抗测量表明,锂的嵌入是在界面电荷转移和扩散的混合控制下进行的。复合电极中SVO利用率的提高归因于存在PPy时界面电荷转移的动力学动力学。

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