| Literature DB >> 25858296 |
Marcus A Worsley1, Swanee J Shin1, Matthew D Merrill1, Jeremy Lenhardt1, Art J Nelson1, Leta Y Woo1, Alex E Gash1, Theodore F Baumann1, Christine A Orme1.
Abstract
We describe the synthesis and characterization of monolithic, ultralow density WS2 and MoS2 aerogels, as well as a high surface area MoS2/graphene hybrid aerogel. The monolithic WS2 and MoS2 aerogels are prepared via thermal decomposition of freeze-dried ammonium thio-molybdate (ATM) and ammonium thio-tungstate (ATT) solutions, respectively. The densities of the pure dichalcogenide aerogels represent 0.4% and 0.5% of full density MoS2 and WS2, respectively, and can be tailored by simply changing the initial ATM or ATT concentrations. Similar processing in the presence of the graphene aerogel results in a hybrid structure with MoS2 sheets conformally coating the graphene scaffold. This layered motif produces a ∼50 wt % MoS2 aerogel with BET surface area of ∼700 m(2)/g and an electrical conductivity of 112 S/m. The MoS2/graphene aerogel shows promising results as a hydrogen evolution reaction catalyst with low onset potential (∼100 mV) and high current density (100 mA/cm(2) at 260 mV).Entities:
Keywords: 2D materials; 3D assembly; catalysis; cryogel; graphene analogues; layered material; transition metal dichalcogenide (TMD)
Year: 2015 PMID: 25858296 DOI: 10.1021/acsnano.5b00087
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881