College of Chemistry and Molecular Sciences, Wuhan University , Hubei 430072, China.
Chemistry and Pharmaceutical Engineering, Chongqing Industry Polytechnic College , Chongqing 401120, China.
ACS Appl Mater Interfaces. 2017 Nov 8;9(44):38950-38958. doi: 10.1021/acsami.7b10306. Epub 2017 Oct 25.
Lithium-sulfur (Li-S) battery is an important candidate for next-generation energy storage. However, the reaction between polysulfide and lithium (Li) anode brings poor cycling stability, low Coulombic efficiency, and Li corrosion. Herein, we report a Li protection technology. Li metal was treated in crown ether containing electrolyte, and thus, treated Li was further used as the anode in Li-S cell. Due to the coordination between Li and crown ether, a Li-permeable film can be formed on Li, and the film is proved to be able to block the detrimental reaction between Li anode and polysulfide. By using the Li anode pretreated in 2 wt % B15C5-containing electrolyte, Li-S cell exhibits significantly improved cycling stability, such as∼900 mAh g after 100 cycles, and high Coulombic efficiency of>93%. In addition, such effect is also notable when high S loading condition is applied.
锂硫(Li-S)电池是下一代储能的重要候选者。然而,多硫化物与锂(Li)阳极之间的反应带来了较差的循环稳定性、低库仑效率和 Li 腐蚀。在此,我们报告了一种 Li 保护技术。在含有冠醚的电解质中处理 Li 金属,然后将处理后的 Li 进一步用作 Li-S 电池的阳极。由于 Li 与冠醚的配位,可以在 Li 上形成 Li 渗透膜,并且该膜被证明能够阻止 Li 阳极和多硫化物之间的有害反应。通过使用在含有 2wt%B15C5 的电解质中预处理的 Li 阳极,Li-S 电池表现出显著改善的循环稳定性,例如在 100 次循环后约为 900 mAh g,并且库仑效率>93%。此外,当应用高 S 负载条件时,这种效果也很显著。