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Study of lithium conducting single ion conductor based on polystyrene sulfonate for lithium battery application

机译:基于聚苯乙烯磺酸盐的锂导电单离子导体在锂电池中的应用研究

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The effect of processing history and morphology is of particular importance for lithium-ion electrolytes for achieving higher ionic conductivities. In this study, single ion conducting poly (4-lithium styrene sulfonic acid) was synthesized by neutralization reaction from polystyrene sulfonic acid, and the effect of morphology and processing method was studied by comparing pelletized, electrospun and gel samples. The PSSLi gels displayed best ionic conductivity, while the pelletized samples showed the worst ionic conductivity. Although electrospinning led to a free standing electrolyte, the lower amount of solvent phase led to lower ionic conductivity when compared to the PSSLi gel. The ionic conductivity at room temperature improved from 6.6 x 10(-5) S/cm to 1.4 x 10(-3) S/cm by optimizing the processing methodology and the lithium ion concentration. The results show that PSSLi based single ion conducting lithium (SICL) gels are a promising candidate for lithium ion battery application. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对于锂离子电解质而言,加工历史和形态的影响对于实现更高的离子电导率尤为重要。本研究通过中和反应由聚苯乙烯磺酸合成了单离子导电聚(4-锂苯乙烯磺酸),并通过比较造粒,电纺丝和凝胶样品研究了形态和加工方法的影响。 PSSLi凝胶显示出最佳的离子电导率,而颗粒状样品显示出最差的离子电导率。尽管电纺丝可产生自立式电解质,但与PSSLi凝胶相比,溶剂相的量较少,离子导电率也较低。通过优化处理方法和锂离子浓度,室温下的离子电导率从6.6 x 10(-5)S / cm提高到1.4 x 10(-3)S / cm。结果表明,基于PSSLi的单离子导电锂(SICL)凝胶是锂离子电池应用的有希望的候选者。 (C)2016 Elsevier Ltd.保留所有权利。

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