Wang Liping, Jankowski Piotr, Njel Christian, Bauer Werner, Li Zhenyou, Meng Zhen, Dasari Bosubabu, Vegge Tejs, Lastra Juan Maria García, Zhao-Karger Zhirong, Fichtner Maximilian
Helmholtz Institute Ulm (HIU) Electrochemical Energy Storage, Helmholtzstrasse 11, Ulm, D-89081, Germany.
Department of Energy Conversion and Storage, Technical University of Denmark, Kongens Lyngby, 2800, Denmark.
Adv Sci (Weinh). 2022 Mar;9(7):e2104605. doi: 10.1002/advs.202104605. Epub 2022 Jan 9.
Magnesium-Sulfur batteries are one of most appealing options among the post-lithium battery systems due to its potentially high energy density, safe and sustainable electrode materials. The major practical challenges are originated from the soluble magnesium polysulfide intermediates and their shuttling between the electrodes, which cause high overpotentials, low sulfur utilization, and poor Coulombic efficiency. Herein, a functional Mo S modified separator is designed to effectively address these issues. Both the experimental results and density functional theory calculations show that the electrochemically active Mo S layer has a superior adsorption capability of polysulfides and simultaneously acts as a mediator to accelerate the polysulfide conversion kinetics. Remarkably, the magnesium-sulfur cell assembled with the functional separator delivers a high specific energy density (942.9 mA h g in the 1st cycle) and can be cycled at 0.2 C for 200 cycles with a Coulombic efficiency of 96%. This work demonstrates a new design concept toward high-performance metal-sulfur batteries.
镁硫电池因其潜在的高能量密度、安全且可持续的电极材料,成为后锂电池系统中最具吸引力的选择之一。主要的实际挑战源于可溶性多硫化镁中间体及其在电极之间的穿梭,这会导致高过电位、低硫利用率和较差的库仑效率。在此,设计了一种功能性Mo S修饰隔膜以有效解决这些问题。实验结果和密度泛函理论计算均表明,具有电化学活性的Mo S层对多硫化物具有优异的吸附能力,同时作为一种介质加速多硫化物的转化动力学。值得注意的是,采用该功能性隔膜组装的镁硫电池具有高比能量密度(第1次循环中为942.9 mA h g),并能在0.2 C下循环200次,库仑效率为96%。这项工作展示了一种用于高性能金属硫电池的新设计理念。