The development of 2D nanomaterial coatings across metal surfaces is a challenge due to the mismatch between the metal microstructure and the nanoscale materials. The naturally occurring thin oxidative layer present across all metal surfaces, may lead to low adherence and connectivity. In this paper, graphene/titania/Titanium hybrid films were for the first time fabricated by a single step chemical vapour deposition process across Titanium foils. The presence of graphene as a dopant was found to enhance the photocatalytic performance of the final products, applied to the degradation of organic molecules and to lead to Schottky-like junction formation at the metal/oxide interface. These Schottky junctions, where vacancies are present across ...
Model photocatalysts composed of TiO2/graphene nanocomposites are prepared to address the role of gr...
Research on zeolitic materials has recently taken off in a new direction, driven by the desire to de...
We demonstrate that graphene oxide can be efficiently reduced by evaporating metal Titanium in high ...
The development of 2D nanomaterial coatings across metal surfaces is a challenge due to the mismatch...
The photocatalytic activity of titania nanoparticles deposited on epitaxial graphene is proven to be...
Titanium dioxide, in the anatase form, is a photocatalyst and has applications in water pollution re...
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...
We present a straightforward method for simultaneously enhancing the electrical conductivity, enviro...
The chemical interaction between Ti and graphene is of significant interest for engineering low-resi...
Recently, graphene-based semiconductor photocatalysts have attracted more attention because of their...
The great potential of graphene can be enhanced thanks to the functionalization of its surface. For...
Published 21 June 2018Herein we studied the structure deformation and photoluminescence properties o...
Hybridizing inorganic nanomaterials with carbon nanotubes and graphene constitutes a powerful approa...
The focus of my research activity during three years of PhD has been on the nanoscale properties of ...
Model photocatalysts composed of TiO2/graphene nanocomposites are prepared to address the role of gr...
Research on zeolitic materials has recently taken off in a new direction, driven by the desire to de...
We demonstrate that graphene oxide can be efficiently reduced by evaporating metal Titanium in high ...
The development of 2D nanomaterial coatings across metal surfaces is a challenge due to the mismatch...
The photocatalytic activity of titania nanoparticles deposited on epitaxial graphene is proven to be...
Titanium dioxide, in the anatase form, is a photocatalyst and has applications in water pollution re...
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...
We present a straightforward method for simultaneously enhancing the electrical conductivity, enviro...
The chemical interaction between Ti and graphene is of significant interest for engineering low-resi...
Recently, graphene-based semiconductor photocatalysts have attracted more attention because of their...
The great potential of graphene can be enhanced thanks to the functionalization of its surface. For...
Published 21 June 2018Herein we studied the structure deformation and photoluminescence properties o...
Hybridizing inorganic nanomaterials with carbon nanotubes and graphene constitutes a powerful approa...
The focus of my research activity during three years of PhD has been on the nanoscale properties of ...
Model photocatalysts composed of TiO2/graphene nanocomposites are prepared to address the role of gr...
Research on zeolitic materials has recently taken off in a new direction, driven by the desire to de...
We demonstrate that graphene oxide can be efficiently reduced by evaporating metal Titanium in high ...