School of Materials Science and Engineering, Key Laboratory of Advanced Ceramics and Machining Technology (Ministry of Education), Tianjin Key Laboratory of Composite and Functional Materials and Tianjin Key Laboratory of Molecular Optoelectronic Science, Tianjin University, Tianjin, 300072, China.
Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology, Department of Chemical Engineering, Tsinghua University, Beijing, 100084, China.
Adv Mater. 2018 Nov;30(45):e1804581. doi: 10.1002/adma.201804581. Epub 2018 Sep 25.
Lithium-sulfur batteries are regarded as one of the most promising candidates for next-generation rechargeable batteries. However, the practical application of lithium-sulfur (Li-S) batteries is seriously impeded by the notorious shuttling of soluble polysulfide intermediates, inducing a low utilization of active materials, severe self-discharge, and thus a poor cycling life, which is particularly severe in high-sulfur-loading cathodes. Herein, a polysulfide-immobilizing polymer is reported to address the shuttling issues. A natural polymer of Gum Arabic (GA) with precise oxygen-containing functional groups that can induce a strong binding interaction toward lithium polysulfides is deposited onto a conductive support of a carbon nanofiber (CNF) film as a polysulfide shielding interlayer. The as-obtained CNF-GA composite interlayer can achieve an outstanding performance of a high specific capacity of 880 mA h g and a maintained specific capacity of 827 mA h g after 250 cycles under a sulfur loading of 1.1 mg cm . More importantly, high reversible areal capacities of 4.77 and 10.8 mA h cm can be obtained at high sulfur loadings of 6 and even 12 mg cm , respectively. The results offer a facile and promising approach to develop viable lithium-sulfur batteries with high sulfur loading and high reversible capacities.
锂硫电池被认为是下一代可充电电池中最有前途的候选者之一。然而,锂硫(Li-S)电池的实际应用受到可溶性多硫化物中间体的穿梭效应的严重阻碍,导致活性材料利用率低、自放电严重,从而循环寿命差,在高载硫量的阴极中尤为严重。在此,报道了一种用于解决穿梭问题的多硫化物固定聚合物。将具有精确含氧官能团的天然聚合物阿拉伯树胶(GA)沉积在碳纤维(CNF)薄膜的导电支撑体上,作为多硫化物屏蔽中间层。所获得的 CNF-GA 复合中间层在硫载量为 1.1mg cm 时,在 250 次循环后可以实现 880 mA h g 的高比容量和 827 mA h g 的保持比容量。更重要的是,在高硫载量为 6 甚至 12mg cm 时,可以获得 4.77 和 10.8 mA h cm 的高可逆面容量。该结果为开发具有高载硫量和高可逆容量的可行锂硫电池提供了一种简便而有前途的方法。