A heterojunction photocatalytic membrane consisting of Cu 2 O and TiO 2 nanowires between reduced graphene oxide (rGO) sheets was fabricated using a facile process from a colloidal suspension. The resultant membrane exhibits significantly enhanced activity in the UV-vis range, surpassing nanowire dispersions, owing to the heterojunction formation and concurrent electron and hole transfer on rGO sheets. The membrane also possesses increased permeability and photocorrosion resistance. Such a design and fabrication method of an rGO-facilitated heterojunction photocatalytic membrane can be extended to a broad range of energy and environmental applications
Graphene oxide-based filtration membranes with photocatalytic antifouling function have been success...
Graphene, a two-dimensional hexagonal honeycomb carbon structure, is widely used in membrane technol...
Among the semiconductor-mediated photoprocesses, gas-phase photocatalytic decomposition of volatile ...
A heterojunction photocatalytic membrane consisting of Cu2O and TiO2 nanowires between reduced graph...
Titanium oxide (TiO2) nanotube membranes are synthesized via a two-step anodization method. The cond...
A highly efficient hybrid photocatalytic/ultrafiltration process is demonstrated for water purificat...
An improved photocatalytic microfiltration membrane was successfully prepared by the impregnation me...
In this study, a solution-based synthesis technique was utilized to produce Cu2O nanoparticles (NPs)...
Carbon dioxide (CO2) photoreduction to high-value products is a technique for dealing with CO2 emiss...
CuO@TiO2 nanowires were prepared with the use of a porous alumina membrane (PAM). The conventional t...
Nanosized titanium oxide (TiO2)-based photocatalysts have exhibited great potential for the degradat...
Abstract TiO2 NSAs/graphene/Cu2O was fabricated on the carbon fiber to use as photocastalysts by coa...
The conversion of CO2 to low-carbon fuels using solar energy is considered an economically attractiv...
We report the design and one-pot synthesis of Ag-doped BiVO4 embedded in reduced graphene oxide (BiV...
Transferring semiconductor film onto plastic substrate for efficient flexible photovoltaic devices w...
Graphene oxide-based filtration membranes with photocatalytic antifouling function have been success...
Graphene, a two-dimensional hexagonal honeycomb carbon structure, is widely used in membrane technol...
Among the semiconductor-mediated photoprocesses, gas-phase photocatalytic decomposition of volatile ...
A heterojunction photocatalytic membrane consisting of Cu2O and TiO2 nanowires between reduced graph...
Titanium oxide (TiO2) nanotube membranes are synthesized via a two-step anodization method. The cond...
A highly efficient hybrid photocatalytic/ultrafiltration process is demonstrated for water purificat...
An improved photocatalytic microfiltration membrane was successfully prepared by the impregnation me...
In this study, a solution-based synthesis technique was utilized to produce Cu2O nanoparticles (NPs)...
Carbon dioxide (CO2) photoreduction to high-value products is a technique for dealing with CO2 emiss...
CuO@TiO2 nanowires were prepared with the use of a porous alumina membrane (PAM). The conventional t...
Nanosized titanium oxide (TiO2)-based photocatalysts have exhibited great potential for the degradat...
Abstract TiO2 NSAs/graphene/Cu2O was fabricated on the carbon fiber to use as photocastalysts by coa...
The conversion of CO2 to low-carbon fuels using solar energy is considered an economically attractiv...
We report the design and one-pot synthesis of Ag-doped BiVO4 embedded in reduced graphene oxide (BiV...
Transferring semiconductor film onto plastic substrate for efficient flexible photovoltaic devices w...
Graphene oxide-based filtration membranes with photocatalytic antifouling function have been success...
Graphene, a two-dimensional hexagonal honeycomb carbon structure, is widely used in membrane technol...
Among the semiconductor-mediated photoprocesses, gas-phase photocatalytic decomposition of volatile ...