We present a straightforward method for simultaneously enhancing the electrical conductivity, environmental stability, and photocatalytic properties of graphene films through one-step transfer of CVD graphene and integration by introducing TiO2/graphene oxide layer. A highly durable and flexible TiO2 layer is successfully used as a supporting layer for graphene transfer instead of the commonly used PMMA. Transferred graphene/TiO2 film is directly used for measuring the carrier transport and optoelectronic properties without an extra TiO2 removal and following deposition steps for multifunctional integration into devices because the thin TiO2 layer is optically transparent and electrically semiconducting. Moreover, the TiO2 layer induces cha...
Solution-phase photocatalytic reduction of graphene oxide to reduced graphene oxide (RGO) by titaniu...
Solution-phase photocatalytic reduction of graphene oxide to reduced graphene oxide (RGO) by titaniu...
Model photocatalysts composed of TiO2/graphene nanocomposites are prepared to address the role of gr...
A direct and facile solution-based procedure has been implemented for manufacturing optically transp...
This paper proposed a technique to dope graphene in Titanium dioxide (TiO2). The work focuses on avo...
We detail a facile fabrication and testing method of functionalizing single-layer graphenes (SLGs) b...
Due to the tunability of the physical, electrical, and optical characteristics of graphene, precisel...
The great potential of graphene can be enhanced thanks to the functionalization of its surface. For...
An optically transparent and UV-light active anode, characterized by high (photo)conductivity, charg...
The incorporation of reduced graphene oxide (rGO) on a TiO2 surface had been demonstrated to be an e...
An optically transparent and UV-light active anode, characterized by high (photo)conductivity, charg...
Graphene production is an ongoing challenge for large-scale applications. Many processes are used to...
To achieve a best promotion effect of photocatalytic activity, an optimized interface between graphe...
An optically transparent and UV-light active anode, characterized by high (photo) conductivity, char...
Recently, graphene-based semiconductor photocatalysts have attracted more attention because of their...
Solution-phase photocatalytic reduction of graphene oxide to reduced graphene oxide (RGO) by titaniu...
Solution-phase photocatalytic reduction of graphene oxide to reduced graphene oxide (RGO) by titaniu...
Model photocatalysts composed of TiO2/graphene nanocomposites are prepared to address the role of gr...
A direct and facile solution-based procedure has been implemented for manufacturing optically transp...
This paper proposed a technique to dope graphene in Titanium dioxide (TiO2). The work focuses on avo...
We detail a facile fabrication and testing method of functionalizing single-layer graphenes (SLGs) b...
Due to the tunability of the physical, electrical, and optical characteristics of graphene, precisel...
The great potential of graphene can be enhanced thanks to the functionalization of its surface. For...
An optically transparent and UV-light active anode, characterized by high (photo)conductivity, charg...
The incorporation of reduced graphene oxide (rGO) on a TiO2 surface had been demonstrated to be an e...
An optically transparent and UV-light active anode, characterized by high (photo)conductivity, charg...
Graphene production is an ongoing challenge for large-scale applications. Many processes are used to...
To achieve a best promotion effect of photocatalytic activity, an optimized interface between graphe...
An optically transparent and UV-light active anode, characterized by high (photo) conductivity, char...
Recently, graphene-based semiconductor photocatalysts have attracted more attention because of their...
Solution-phase photocatalytic reduction of graphene oxide to reduced graphene oxide (RGO) by titaniu...
Solution-phase photocatalytic reduction of graphene oxide to reduced graphene oxide (RGO) by titaniu...
Model photocatalysts composed of TiO2/graphene nanocomposites are prepared to address the role of gr...