Hou Li-Peng, Li Zheng, Yao Nan, Bi Chen-Xi, Li Bo-Quan, Chen Xiang, Zhang Xue-Qiang, Zhang Qiang
Beijing Key Laboratory of Green Chemical, Reaction Engineering and Technology, Department of Chemical Engineering, Tsinghua University, Beijing, 100084, China.
Advanced Research Institute of Multidisciplinary Science, Beijing Institute of Technology, Beijing, 100081, China.
Adv Mater. 2022 Nov;34(45):e2205284. doi: 10.1002/adma.202205284. Epub 2022 Oct 3.
Long cycling lifespan is a prerequisite for practical lithium-sulfur batteries yet is restricted by side reactions between soluble polysulfides and the lithium-metal anode. The regulation on solvation structure of polysulfides renders encapsulating polysulfides electrolytes (EPSE) as a promising solution to suppress the parasitic reactions. The solvating power of the solvents in the outer solvent shell of lithium polysulfides is critical for the encapsulation effect of EPSE. Herein, 1,1,2,2-tetrafluoroethyl-2,2,3,3-tetrafluoropropyl ether (HFE) is demonstrated as a superior outer-shell solvent to construct EPSE. Based on the large steric hindrance of the fluorohydrocarbon chains, the electron-withdrawing perfluoro segment (CF further endows HFE with prominently weak solvating power. The HFE-EPSE improves the lifespan from 54 to 135 cycles for lithium-sulfur batteries with an ultrathin lithium-metal anode (50 µm) and high-areal-loading sulfur cathode (4.4 mg cm ). Furthermore, a 334 Wh kg lithium-sulfur pouch cell (2.4 Ah level) with HFE-EPSE stably undergoes 25 cycles. This work demonstrates the role of weakening solvating power of outer-shell solvents to construct superior EPSE and inspires the significance of the solvation chemistry of polysulfides to achieve practical lithium-sulfur batteries.
长循环寿命是实用锂硫电池的一个先决条件,但受到可溶性多硫化物与锂金属负极之间副反应的限制。对多硫化物溶剂化结构的调控使多硫化物封装电解质(EPSE)成为抑制寄生反应的一种有前景的解决方案。锂多硫化物外层溶剂壳层中溶剂的溶剂化能力对EPSE的封装效果至关重要。在此,1,1,2,2-四氟乙基-2,2,3,3-四氟丙醚(HFE)被证明是构建EPSE的一种优质外层溶剂。基于氟代烃链的大空间位阻,吸电子的全氟链段(CF)进一步赋予HFE显著较弱的溶剂化能力。对于具有超薄锂金属负极(50 µm)和高面负载硫正极(4.4 mg cm)的锂硫电池,HFE-EPSE将循环寿命从54次提高到135次。此外,采用HFE-EPSE的334 Wh kg锂硫软包电池(2.4 Ah级别)稳定地经历了25次循环。这项工作展示了削弱外层溶剂溶剂化能力以构建优质EPSE的作用,并激发了多硫化物溶剂化化学对于实现实用锂硫电池的重要性。