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通过基于双功能碳酸盐的电解质促进“固-液-固”转化反应以实现超长寿命钾硫电池

Boosting the "Solid-Liquid-Solid" Conversion Reaction via Bifunctional Carbonate-Based Electrolyte for Ultra-long-life Potassium-Sulfur Batteries.

作者信息

Ye Shufen, Yao Nan, Chen Xiang, Ma Mingze, Wang Lifeng, Chen Zhihao, Yao Yu, Zhang Qiang, Yu Yan

机构信息

Hefei National Research Center for Physical Sciences at the Microscale, Department of Materials Science and Engineering, iChEM (Collaborative Innovation Center of Chemistry for Energy Materials), CAS Key Laboratory of Materials for Energy Conversion, University of Science and Technology of China, Hefei, Anhui, 230026, China.

Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology, Department of Chemical Engineering, Tsinghua University, Beijing, 100084, China.

出版信息

Angew Chem Int Ed Engl. 2023 Oct 26;62(44):e202307728. doi: 10.1002/anie.202307728. Epub 2023 Sep 25.

Abstract

Potassium-sulfur (K-S) batteries have attracted wide attention owing to their high theoretical energy density and low cost. However, the intractable shuttle effect of K polysulfides results in poor cyclability of K-S batteries, which severely limits their practical application. Herein, a bifunctional concentrated electrolyte (3 mol L potassium bis(trifluoromethanesulfonyl)imide in ethylene carbonate (EC)) with high ionic conductivity and low viscosity is developed to regulate the dissolution behavior of polysulfides and induce uniform K deposition. The organic groups in the cathode electrolyte interphase layer derived from EC can effectively block the polysulfide shuttle and realize a "solid-liquid-solid" reaction mechanism. The KF-riched solid-electrolyte interphase inhibits K dendrite growth during cycling. As a result, the achieved K-S batteries display a high reversible capacity of 654 mAh g at 0.5 A g after 800 cycles and a long lifespan over 2000 cycles at 1 A g .

摘要

钾硫(K-S)电池因其高理论能量密度和低成本而受到广泛关注。然而,多硫化钾难以解决的穿梭效应导致K-S电池的循环稳定性较差,这严重限制了它们的实际应用。在此,开发了一种具有高离子电导率和低粘度的双功能浓缩电解质(3 mol L双(三氟甲磺酰)亚胺钾在碳酸亚乙酯(EC)中),以调节多硫化物的溶解行为并诱导均匀的钾沉积。源自EC的阴极电解质界面层中的有机基团可以有效地阻止多硫化物穿梭,并实现“固-液-固”反应机制。富含KF的固体电解质界面在循环过程中抑制钾枝晶生长。结果,所制备的K-S电池在0.5 A g下800次循环后显示出654 mAh g的高可逆容量,在1 A g下超过2000次循环具有长寿命。

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