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Phase Inversion Strategy to Flexible Freestanding Electrode: Critical Coupling of Binders and Electrolytes for High Performance Li-S Battery

机译:柔性独立式电极的相转化策略:高性能Li-S电池中粘合剂和电解质的临界耦合

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摘要

Development of flexible and freestanding electrode is attracting great attention in lithium-sulfur (Li-S) batteries, but the severe capacity fading caused by the lithium polysulfides (PSs) shuttle effect remains challenging. Herein, a completely new polymeric binder of polyethersulfone is introduced. Not only it enables massive production of flexible/current-free electrode by a novel concept of phase-inversion approach but also the resultant polymeric networks can effectively trap the soluble polysulfides within the electrode, owing to the higher hydrophilicity and stronger affinity properties than the routine polyvinylidene fluoride. Coupling with polysulfide-based electrolyte, the Li-S cell shows a higher capacity of 1141 mAh g(-1), a lower polarization of 192 mV, and a more stable capacity retention with 100% Coulombic efficiency over 100 cycles at 0.25C. The advantages of favored binder and electrolyte are further demonstrated in lithium-ion sulfur full battery with lithiated graphite anode, which demonstrates much improved performance than those previously reported. This work not only introduces a novel strategy for flexible freestanding electrodes but also enlightens the importance of coupling electrodes and electrolytes to higher performances for Li-S battery.
机译:柔性自立电极的开发在锂硫(Li-S)电池中引起了极大的关注,但是由多硫化锂(PSs)穿梭效应引起的严重容量衰减仍然具有挑战性。在此,引入了全新的聚醚砜聚合物粘合剂。由于比常规方法具有更高的亲水性和更强的亲和力,它不仅可以通过新的相转化方法概念大量生产柔性/无电流电极,而且所得的聚合物网络也可以有效地将可溶性多硫化物捕集在电极内聚偏二氟乙烯。与基于多硫化物的电解质耦合,Li-S电池在0.25C的100个循环中显示出更高的容量,即1141 mAh g(-1),更低的极化192 mV,以及更稳定的容量保持率和100%的库仑效率。在具有锂化石墨阳极的锂离子硫充满电池中,进一步证明了所偏爱的粘合剂和电解质的优势,与先前报道的相比,其性能大大提高。这项工作不仅为柔性自立式电极引入了一种新颖的策略,而且还启发了将电极和电解质耦合到Li-S电池更高性能的重要性。

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