School of Materials Science and Engineering, University of Shanghai for Science & Technology , Shanghai 200093, China.
ACS Nano. 2013 Dec 23;7(12):10995-1003. doi: 10.1021/nn404601h. Epub 2013 Nov 21.
Highly stable sulfur/microporous carbon (S/MC) composites are prepared by vacuum infusion of sulfur vapor into microporous carbon at 600 °C, and lithium sulfide/microporous carbon (Li2S/MC) cathodes are fabricated via a novel and facile in situ lithiation strategy, i.e., spraying commercial stabilized lithium metal powder (SLMP) onto a prepared S/MC film cathode prior to the routine compressing process in cell assembly. The in situ formed Li2S/MC film cathode shows high Coulombic efficiency and long cycling stability in a conventional commercial Li-ion battery electrolyte (1.0 M LiPF6 + EC/DEC (1:1 v/v)). The reversible capacities of Li2S/MC cathodes remain about 650 mAh/g even after 900 charge/discharge cycles, and the Coulombic efficiency is close to 100% at a current density of 0.1C, which demonstrates the best electrochemical performance of Li2S/MC cathodes reported to date. Furthermore, this Li2S/MC film cathode fabricated via our in situ lithiation strategy can be coupled with a Li-free anode, such as graphite, carbon/tin alloys, or Si nanowires to form a rechargeable Li-ion cell. As the Li2S/MC cathode is paired with a commercial graphite anode, the full cell of Li2S/MC-graphite (Li2S-G) shows a stable capacity of around 600 mAh/g in 150 cycles. The Li2S/MC cathodes prepared by high-temperate sulfur infusion and SLMP prelithiation before cell assembly are ready to fit into current Li-ion batteries manufacturing processes and will pave the way to commercialize low-cost Li2S-G Li-ion batteries.
高度稳定的硫/微孔碳(S/MC)复合材料是通过在 600°C 下将硫蒸气真空注入微孔碳中制备的,而通过一种新颖且简便的原位锂化策略制备了硫化锂/微孔碳(Li2S/MC)阴极,即在常规电池组装过程中的常规压缩过程之前,将商业稳定的锂金属粉末(SLMP)喷涂到制备好的 S/MC 薄膜阴极上。原位形成的 Li2S/MC 薄膜阴极在传统的商业锂离子电池电解液(1.0 M LiPF6 + EC/DEC(1:1 v/v))中表现出高库仑效率和长循环稳定性。Li2S/MC 阴极的可逆容量在 900 次充放电循环后仍保持在约 650 mAh/g,在 0.1C 的电流密度下,库仑效率接近 100%,这展示了迄今为止报道的 Li2S/MC 阴极的最佳电化学性能。此外,通过我们的原位锂化策略制备的这种 Li2S/MC 薄膜阴极可以与无锂阳极(如石墨、碳/锡合金或 Si 纳米线)耦合,形成可充电锂离子电池。当 Li2S/MC 阴极与商业石墨阳极配对时,Li2S/MC-石墨(Li2S-G)全电池在 150 次循环中显示出约 600 mAh/g 的稳定容量。在电池组装之前,通过高温硫注入和 SLMP 预锂化制备的 Li2S/MC 阴极可以适应当前的锂离子电池制造工艺,并为商业化低成本 Li2S-G 锂离子电池铺平道路。