| Literature DB >> 26885723 |
Kai Zhang1,2, Furong Qin2, Yanqing Lai2, Jie Li2, Xiaoke Lei2, Mengran Wang2, Hai Lu3, Jing Fang2.
Abstract
Hierarchically porous carbon/graphene aerogel (CGA) with relatively high surface area and pore volume is synthesized through an efficient fabrication strategy, which involves forming hydrothermal carbon layer on the pore wall as upholder and directly carbonizing the wet hydrogel from hydrothermal reaction, without using any special drying techniques. Cassava powder is used as carbon precursor which enables sustainable synthesis. Carbonizing the wet hydrothermal product is found to be a self-activation process, through which abundant pores are generated. The aerogel is used as host to encapsulate sulfur for lithium sulfur battery. Graphene, served as highly conductive scaffold, accelerates the transport of the electrons. The hierarchically porous structure is in favor of improving the electrochemical performance of lithium sulfur battery. Therefore, the cathode with high sulfur loading and high sulfur content can deliver very good performance.Entities:
Keywords: aerogel; cassava; graphene; hierarchically porous; lithium sulfur battery
Year: 2016 PMID: 26885723 DOI: 10.1021/acsami.5b12586
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229