Kim Jin Won, Ocon Joey D, Park Dong-Won, Lee Jaeyoung
Electrochemical Reaction and Technology Laboratory, School of Environmental Science and Engineering, Gwangju Institute of Science and Technology (GIST), Gwangju, 500-712 (South Korea).
ChemSusChem. 2014 May;7(5):1265-73. doi: 10.1002/cssc.201300782. Epub 2014 Jan 24.
In this article, we highlight the salient issues in the development of lithium-sulfur battery (LSB) cathodes, present different points of view in solving them, and argue, why in the future, functionalized graphene or graphene oxide might be the ultimate solution towards LSB commercialization. As shown by previous studies and also in our recent work, functionalized graphene and graphene oxide enhance the reversibility of the charge-discharge process by trapping polysulfides in the oxygen functional groups on the graphene surface, thus minimizing polysulfide dissolution. This will be helpful for the rational design of new cathode structures based on graphene for LSBs with minimal capacity fading, low extra cost, and without the unnecessary weight increase caused by metal/metal oxide additives.
在本文中,我们重点介绍了锂硫电池(LSB)阴极开发中的突出问题,提出了解决这些问题的不同观点,并论证了为何在未来,功能化石墨烯或氧化石墨烯可能是实现LSB商业化的最终解决方案。如先前研究以及我们最近的工作所示,功能化石墨烯和氧化石墨烯通过将多硫化物捕获在石墨烯表面的氧官能团中,增强了充放电过程的可逆性,从而最大限度地减少了多硫化物的溶解。这将有助于合理设计基于石墨烯的新型LSB阴极结构,使其具有最小的容量衰减、较低的额外成本,且不会因金属/金属氧化物添加剂而导致不必要的重量增加。