Institute of New Energy Material Chemistry, School of Materials Science and Engineering, National Institute for Advanced Materials and ‡Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Tianjin Key Laboratory of Metal and Molecule Based Material Chemistry, Nankai University , Tianjin 300350, China.
ACS Appl Mater Interfaces. 2016 Nov 23;8(46):31684-31694. doi: 10.1021/acsami.6b11188. Epub 2016 Nov 14.
The lithium-sulfur (Li-S) battery is expected to be the high-energy battery system for the next generation. Nevertheless, the degradation of lithium anode in Li-S battery is the crucial obstacle for practical application. In this work, a porous carbon paper obtained from corn stalks via simple treating procedures is used as interlayer to stabilize the surface morphology of Li anode in the environment of Li-S battery. A smooth surface morphology of Li is obtained during cycling by introducing the porous carbon paper into Li-S battery. Meanwhile, the electrochemical performance of sulfur cathode is partially enhanced by alleviating the loss of soluble intermediates (polysulfides) into the electrolyte, as well as the side reaction of polysulfides with metallic lithium. The Li-S battery assembled with the interlayer exhibits a large capacity and excellent capacity retention. Therefore, the porous carbon paper as interlayer plays a bifunctional role in stabilizing the Li anode and enhancing the electrochemical performance of the sulfur cathode for constructing a stable Li-S battery.
锂硫(Li-S)电池有望成为下一代高能量电池系统。然而,锂硫电池中锂阳极的降解是实际应用的关键障碍。在这项工作中,通过简单的处理程序从玉米秸秆中获得的多孔碳纸用作中间层,以稳定锂硫电池环境中锂阳极的表面形态。通过将多孔碳纸引入锂硫电池,在循环过程中获得了光滑的锂表面形态。同时,通过缓解可溶性中间产物(多硫化物)向电解质中的损失以及多硫化物与金属锂的副反应,部分提高了硫阴极的电化学性能。组装有中间层的 Li-S 电池表现出大的容量和优异的容量保持率。因此,多孔碳纸作为中间层在稳定锂阳极和增强硫阴极的电化学性能方面发挥了双重作用,从而构建了稳定的 Li-S 电池。