首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Investigation of cyano resin-based gel polymer electrolyte: in situ gelation mechanism and electrode-electrolyte interfacial fabrication in lithium-ion battery
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Investigation of cyano resin-based gel polymer electrolyte: in situ gelation mechanism and electrode-electrolyte interfacial fabrication in lithium-ion battery

机译:氰基树脂基凝胶聚合物电解质的研究:锂离子电池的原位胶凝机理和电极电解质界面制备

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摘要

Cyanoethyl polyvinyl alcohol (PVA-CN)-based gel polymer electrolyte (GPE) is a high-performance electrolyte for lithium-ion batteries (LIBs), which is in situ synthesized from a stable monomer without using additional initiators. Unfortunately, the gelation mechanism of PVA-CN is still unclear. Furthermore, for general GPEs prepared by in situ polymerization, the electrode-GPE interface in batteries remains to be further optimized. Here we present the gelation mechanism of the PVA-CN-based GPE and fabricate an electrode-GPE interface with less resistance during battery formation. The cross-linkable PVA-CN-based organogel is formed via in situ cationic polymerization of the cyano resin initiated by PF5, a strong Lewis acid produced by the thermo-decomposition of LiPF6. It is interesting to find that the battery formation process completed in the precursor solution instead of gel can greatly reduce the interfacial resistance of graphite-GPE and benefit the formation of a more stable solid electrolyte interface (SEI) on the anode, which contributes to a dramatic improvement in battery performance. This work gives useful guidance towards designing new GPE materials and promoting their practical application in LIBs.
机译:基于氰乙基聚乙烯醇(PVA-CN)的凝胶聚合物电解质(GPE)是用于锂离子电池(LIB)的高性能电解质,它是从稳定的单体就地合成而无需使用其他引发剂的。不幸的是,PVA-CN的胶凝机理仍不清楚。此外,对于通过原位聚合制备的普通GPE,电池中的电极-GPE界面仍有待进一步优化。在这里,我们介绍了基于PVA-CN的GPE的胶凝机理,并在电池形成过程中以较小的电阻制造了电极-GPE界面。可交联的基于PVA-CN的有机凝胶是通过由PF5引发的氰基树脂的原位阳离子聚合而形成的,PF5是由LiPF6的热分解产生的强路易斯酸。有趣的是,发现在前体溶液而不是凝胶中完成的电池形成过程可以大大降低石墨-GPE的界面电阻,并有利于在阳极上形成更稳定的固体电解质界面(SEI),这有助于电池性能的显着改善。这项工作为设计新的GPE材料和促进其在LIB中的实际应用提供了有用的指导。

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