Wang Han-Chi, Fan Chao-Ying, Zheng Yan-Ping, Zhang Xiao-Hua, Li Wen-Hao, Liu Si-Yu, Sun Hai-Zhu, Zhang Jing-Ping, Sun Ling-Na, Wu Xing-Long
National & Local United Engineering Laboratory for Power Batteries and Faculty of Chemistry, Northeast Normal University, Changchun, Jilin, 130024, P. R. China.
School of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, 518060, P. R. China.
Chemistry. 2017 Jul 18;23(40):9666-9673. doi: 10.1002/chem.201701580. Epub 2017 Jun 27.
In this work, oxygen-deficient anatase TiO nanosheets (A-TiO NSs) are proposed as a substrate to improve the electrochemical properties of sulfur electrodes for lithium-sulfur (Li-S) batteries. The A-TiO NSs are prepared by partly reducing pristine TiO nanosheets (A-TiO NSs) in NaBH solution. With some oxygen vacancies on the surface of the TiO nanosheets, A-TiO NSs not only promote electronic transfer, but also act as more effective polysulfide reservoirs to minimize the dissolution of lithium polysulfides (LiPSs) than the A-TiO NSs control. Hence, upon utilization as modifiers for cathodes of Li-S batteries, the A-TiO NSs-modified sulfur (A-TiO NSs-S) cathode exhibits a higher reversible specific capacity and greater cycling performance and rate capability than the A-TiO NSs-modified one (A-TiO NSs-S). For example, A-TiO NSs-S delivers an initial specific capacity of 1277.1 mAh g at 0.1 C and maintains a stable Coulombic efficiency of approximately 99.2 % after the first five cycles; these values are higher than those of 997.3 mAh g and around 96.7 %, respectively, for A-TiO NSs-S. The enhanced electrochemical properties of the A-TiO NSs-S cathode can be ascribed mainly to the more effective adsorption of dissolvable and diffused LiPSs by the oxygen vacancies. Therefore, utilization of the structure of oxygen vacancies in Li-S batteries demonstrates great prospects for practical application.
在本工作中,缺氧锐钛矿型TiO纳米片(A-TiO NSs)被提议作为一种基底,以改善锂硫(Li-S)电池硫电极的电化学性能。A-TiO NSs是通过在NaBH溶液中部分还原原始TiO纳米片(A-TiO NSs)制备而成。由于TiO纳米片表面存在一些氧空位,A-TiO NSs不仅促进电子转移,而且作为更有效的多硫化物储存库,比未处理的TiO纳米片(A-TiO NSs对照)能更好地减少多硫化锂(LiPSs)的溶解。因此,当用作Li-S电池阴极的改性剂时,A-TiO NSs改性硫(A-TiO NSs-S)阴极比未改性的(A-TiO NSs-S)表现出更高的可逆比容量、更好的循环性能和倍率性能。例如,A-TiO NSs-S在0.1 C下的初始比容量为1277.1 mAh g,在前五个循环后保持约99.2%的稳定库仑效率;而A-TiO NSs-S的这些值分别为997.3 mAh g和约96.7%。A-TiO NSs-S阴极电化学性能的增强主要归因于氧空位对可溶解和扩散的LiPSs更有效的吸附。因此,在Li-S电池中利用氧空位结构具有广阔的实际应用前景。