AbstractA process for fabricating graphene and TiO2 layer by layer composite was introduced to improve the photocatalytic activity by controlling the layers, thickness and the mass ratio between graphene and TiO2. The graphene oxide (GO) was synthesized from natural graphite powder by the modified Hummers method. Large-area uniform GO and TiO2 thin films were made by a spin-coating process in turn. After exposure of the TiO2/GO multilayer film to UV light irradiation which allows the reduction of GO to graphene, a novel photocatalytic structure as graphene and TiO2 layer by layer composite was synthesized. The cross-sectional SEM image showed that a clear layer by layer microstructure with a single layer thickness of graphene or TiO2 was in...
The production of graphene in large quantities is an ongoing challenge for large-scale applications....
The production of graphene in large quantities is an ongoing challenge for large-scale applications....
The production of graphene in large quantities is an ongoing challenge for large-scale applications....
AbstractA process for fabricating graphene and TiO2 layer by layer composite was introduced to impro...
Graphene production is an ongoing challenge for large-scale applications. Many processes are used to...
Graphene production is an ongoing challenge for large-scale applications. Many processes are used to...
Graphene production is an ongoing challenge for large-scale applications. Many processes are used to...
Model photocatalysts composed of TiO2/graphene nanocomposites are prepared to address the role of gr...
Model photocatalysts composed of TiO2/graphene nanocomposites are prepared to address the role of gr...
The great potential of graphene can be enhanced thanks to the functionalization of its surface. For...
A simple single stage approach, based on the hydrothermal technique, has been introduced to synthesi...
In the present paper, a novel composite Graphene–Gold (Gr–Au)/TiO2–SiO2 photocatalyst was synthesize...
Graphene has impressible absorbing ability and its electron transmission capacity makes it a great p...
The great potentialities of graphene can be enhanced thanks to the functionalization of its surface,...
The reduction of graphene oxide (GO) with a large-scale production has been demonstrated to be one o...
The production of graphene in large quantities is an ongoing challenge for large-scale applications....
The production of graphene in large quantities is an ongoing challenge for large-scale applications....
The production of graphene in large quantities is an ongoing challenge for large-scale applications....
AbstractA process for fabricating graphene and TiO2 layer by layer composite was introduced to impro...
Graphene production is an ongoing challenge for large-scale applications. Many processes are used to...
Graphene production is an ongoing challenge for large-scale applications. Many processes are used to...
Graphene production is an ongoing challenge for large-scale applications. Many processes are used to...
Model photocatalysts composed of TiO2/graphene nanocomposites are prepared to address the role of gr...
Model photocatalysts composed of TiO2/graphene nanocomposites are prepared to address the role of gr...
The great potential of graphene can be enhanced thanks to the functionalization of its surface. For...
A simple single stage approach, based on the hydrothermal technique, has been introduced to synthesi...
In the present paper, a novel composite Graphene–Gold (Gr–Au)/TiO2–SiO2 photocatalyst was synthesize...
Graphene has impressible absorbing ability and its electron transmission capacity makes it a great p...
The great potentialities of graphene can be enhanced thanks to the functionalization of its surface,...
The reduction of graphene oxide (GO) with a large-scale production has been demonstrated to be one o...
The production of graphene in large quantities is an ongoing challenge for large-scale applications....
The production of graphene in large quantities is an ongoing challenge for large-scale applications....
The production of graphene in large quantities is an ongoing challenge for large-scale applications....