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Improvement in the Ppy/V2O5 hybrid as a cathode material for Li ion batteries using PSA as an organic additive

机译:使用PSA作为有机添加剂的Ppy / V2O5混合电池作为锂离子电池正极材料的改进

摘要

With the aim of improving the electrochemical properties of this candidate cathodic material for lithium ion batteries, a vanadium oxide (V2O5) and polypyrrole (Ppy) hybrid was prepared using pyridinesulfonic acid (PSA) as additive. The hybrid synthesis has been carried out in the literature by chemical polymerization of pyrrole in the host inorganic matrix, using the V2O5 dispersed in an acidic solution as an oxidizing agent. In this work the hybrid has been synthesised with PSA giving good results compared to other samples of the pristine V2O5 and to the Ppy/V2O5 hybrid without additive. An improvement of about 20% in the charge storage capacity has been achieved. The reasons for this improvement are discussed and analyzed using different experimental techniques. The hybrid material has the added advantage of an improved performance without the addition of any binder or conducting element as a cathode in a lithium ion battery.
机译:为了改善该锂离子电池候选阴极材料的电化学性能,使用吡啶磺酸(PSA)作为添加剂制备了钒氧化物(V2O5)和聚吡咯(Ppy)杂化物。在文献中已经通过分散在酸性溶液中的V2O5作为氧化剂,通过吡咯在主体无机基质中的化学聚合来进行杂化合成。在这项工作中,与原始V2O5的其他样品以及不含添加剂的Ppy / V2O5杂种相比,用PSA合成的杂种具有良好的结果。已经实现了电荷存储容量的大约20%的提高。使用不同的实验技术讨论和分析了这种改进的原因。杂化材料具有在不添加任何粘合剂或导电元素作为锂离子电池中的阴极的情况下改善性能的附加优点。

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