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首页> 外文期刊>ACS applied materials & interfaces >Gel Polymer Electrolyte with High Li+ Transference Number Enhancing the Cycling Stability of Lithium Anodes
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Gel Polymer Electrolyte with High Li+ Transference Number Enhancing the Cycling Stability of Lithium Anodes

机译:具有高Li +转移号的凝胶聚合物电解质增强锂阳极的循环稳定性

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摘要

Lithium anodes suffer from severe safety problems in liquid electrolyte systems that result from an unstable Li plating/stripping process and Li dendrite growth, leading to rapid degradation of Li metal batteries. A polyethylene (PE)-supported gel polymer electrolyte (GPE) with excellent electrolyte uptake/retention capability was simply prepared in this paper by the construction of cross-linked polymer networks (PNs) on the surface of a poly(ethylenimine)-primed PE separator to stabilize the lithium anode. The highly delocalized negative charge of p-styrene sulfonate groups on PNs plays a role in regulating the Li+ and anion transport, giving rise to a high Li+ transference number. This GPE extended the electrochemical stability to 4.8 V and improved the stability of interface between the electrolyte and lithium metal anode (reduced overpotential and suppressed lithium dendrites) during storage and repeated lithium plating/stripping cycling. The Li metal anode-based battery employing this GPE exhibits excellent cycling stability and C-rate capability.
机译:锂阳极在液体电解质系统中遭受严重的安全问题,该系统由不稳定的Li电镀/汽提工艺和Li枝晶生长产生,导致Li金属电池的快速降解。通过在聚(乙基亚胺)的表面上的交联聚合物网络(PNS)的构建中简单地制备具有优异的电解质吸收/保持能力的聚乙烯(PE) - 支持凝胶聚合物电解质(GPE)分离器稳定锂阳极。 PNS上的对苯乙烯磺酸盐基团的高度移植的负电荷在调节Li +和阴离子运输方面发挥作用,产生高Li +转移数。该GPE将电化学稳定性延长至4.8V,并在储存和重复锂电镀/汽提循环期间改善了电解质和锂金属阳极(减少过电压和抑制锂枝晶)之间的界面的稳定性。采用该GPE的Li金属阳极基电池表现出优异的循环稳定性和C速率能力。

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