| Literature DB >> 29300088 |
Donghee Gueon1, Jeong Tae Hwang1, Seung Bo Yang2, Eunkyung Cho2, Kwonnam Sohn2, Doo-Kyung Yang2, Jun Hyuk Moon1.
Abstract
A carbon host capable of effective and uniform sulfur loading is the key for lithium-sulfur batteries (LSBs). Despite the application of porous carbon materials of various morphologies, the carbon hosts capable of uniformly impregnating highly active sulfur is still challenging. To address this issue, we demonstrate a hierarchical pore-structured CNT particle host containing spherical macropores of several hundred nanometers. The macropore CNT particles (M-CNTPs) are prepared by drying the aerosol droplets in which CNTs and polymer particles are dispersed. The spherical macropore greatly improves the penetration of sulfur into the carbon host in the melt diffusion of sulfur. In addition, the formation of macropores greatly develops the volume of the micropore between CNT strands. As a result, we uniformly impregnate 70 wt % sulfur without sulfur residue. The S-M-CNTP cathode shows a highly reversible capacity of 1343 mA h g-1 at a current density of 0.2 C even at a high sulfur content of 70 wt %. Upon a 10-fold current density increase, a high capacity retention of 74% is observed. These cathodes have a higher sulfur content than those of conventional CNT hosts but nevertheless exhibit excellent performance. Our CNTPs and pore control technology will advance the commercialization of CNT hosts for LSBs.Entities:
Keywords: CNT particles; hierarchical pores; high sulfur contents; lithium sulfur batteries; sulfur infiltration; sulfur residue
Year: 2018 PMID: 29300088 DOI: 10.1021/acsnano.7b05869
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881