| Literature DB >> 28375001 |
Beibei Wang1,2, Yin Zhang3, Jin Zhang1, Ruoyu Xia1, Yingli Chu1, Jiachen Zhou1, Xiaowei Yang1, Jia Huang1,2.
Abstract
A facile strategy was designed for the in situ synthesis of MoS2 nanospheres on functionalized graphene nanoplates (MoS2@f-graphene) for use as lithium-ion battery anode materials. A modified Birch reduction was used to exfoliate graphite into few-layer graphene followed by modification with functional groups. Compared to the most common approach of mixing MoS2 and reduced graphene oxide, our approach provides a way to circumvent the harsh oxidation and destruction of the carbon basal planes. In this process, alkylcarboxyl functional groups on the functionalized graphene (f-graphene) serve as sites where MoS2 nanospheres crystallize, and thus create bridges between the MoS2 nanospheres and the graphene layers to effectively facilitate electronic transport and to avoid both the aggregation of MoS2 and the restacking of graphene. As anode materials, this unique MoS2@f-graphene heterostructure has a high specific capacity of 1173 mAh g-1 at a current density of 100 mA g-1 and a good rate capacity (910 mAh g-1 at 1600 mA g-1).Entities:
Keywords: composites; functionalized graphene; heterostructure; lithium-ion battery anode; modification; molybdenum disulfide
Year: 2017 PMID: 28375001 DOI: 10.1021/acsami.7b00248
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229