Article ID Journal Published Year Pages File Type
1280702 International Journal of Hydrogen Energy 2014 11 Pages PDF
Abstract

•Novel 3D MoS2/P25/graphene ternary aerogel was obtained by hydrothermal process.•MoS2/P25/graphene-aerogel with porous structure has efficient charge separation.•Photocurrent of ternary aerogel was 6 times higher than that of P25 at 0.6 V.•Photodegradation MO of MoS2/P25/graphene-aerogel was completed within 15 min.

A novel graphene-based three-dimensional (3D) aerogel embedded with two types of functional nanomaterials had been prepared by a facile one-pot hydrothermal process. During the hydrothermal reaction, graphene, TiO2 nanoparticles and MoS2 nanosheets were self-assembled into the 3D interconnected networks aerogel, where the uniformly dispersed TiO2 nanoparticles were densely anchored onto the graphene nanosheets and decorated with the ultrathin MoS2 nanosheets. The UV–vis DRS and PL spectra measurement shows that the MoS2/P25/graphene aerogel exhibits enhanced light absorption and efficient charge separation properties. As a new photocatalyst, the photocatalytic activity was evaluated by photoelectrochemical test and photodegradation methyl orange (MO) under UV irradiation, an improvement of photocurrent was observed, as 6 times higher for MoS2/P25/graphene aerogel (37.45 mA/cm2) than pure P25 at +0.6 V, and the fastest photodegradation of MoS2/P25/graphene aerogel was found within 15 min. The improved photocatalytic activity is attributed to the porous structure, good electrical conductivity and the maximization of accessible sites of the unique 3D graphene aerogel, the increasing active adsorption sites and photocatalytic reaction centers for the introduction of MoS2 nanosheets, and the positive synergetic effect between the three components in this hybrid. This work demonstrates that the as-prepared MoS2/P25/graphene aerogel may have a great potential application in photoelectrochemical hydrogen production and pollution removal.

Graphical abstractA three-dimensional interconnected network MoS2/P25/graphene-aerogel was prepared by a facile one-pot hydrothermal process, which shows superior durability photoelectrochemical properties and outstanding photodegradation activities.Figure optionsDownload full-size imageDownload as PowerPoint slide

Related Topics
Physical Sciences and Engineering Chemistry Electrochemistry
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