The use of semiconductors as photoelectrochemical electrodes and photocatalysts has been studied extensively over the last few decades; however, it is challenging to design one single material meeting a wide range of requirements for applications such as photostability, wide light absorbance and earth abundance. In this study, we started with earth-abundant materials, namely TiO2, Cu2O and carbon, to design a nanocomposite with TiO2 nanofibers (NFs) and Cu2O nanocubes (NCs) connected by carbon nanowires (NWs). The nanocomposite (C/TiO2/Cu2O) demonstrated excellent photo(electro)activity under simulated visible light as well as enhanced durability. Morphologies imaged by electron microscopes showed that TiO2 NFs and Cu2O NCs were well connec...
International audienceThird generation solar cells emerged with the aim of developing efficient, eas...
Metallic copper is a dependable co-catalyst for improving photoactivity of TiO2 photocatalysis. Cu@T...
Composite Ti/TiO2/Cu2O electrodes were produced by electrodeposition of p-Cu2O nanoparticles over th...
The use of semiconductors as photoelectrochemical electrodes and photocatalysts has been studied ext...
Abstract TiO2 NSAs/graphene/Cu2O was fabricated on the carbon fiber to use as photocastalysts by coa...
We report on the optimization of electrospun TiO2-CuO composite nanofibers as low-cost and stable ph...
In order to improve the photocatalytic activity of TiO2, we successfully loaded nano-CuO on the TiO2...
The properties of newly synthesized Cu2O/CuO-decorated TiO2/graphene oxide (GO) nanocomposites (NC) ...
Cu2O/TiO2 nanotube heterojunction arrays have been prepared by photoreduction depositing Cu2O nanopa...
A TiO2@Cu2O semiconductor heterostructure with better photochemical response compared to TiO2 was ob...
Energy from renewables (solar, photovoltaic, geothermal), is a major challenge for researchers' effo...
Novel solar cells are being synthesized from sustainable, non-toxic, and economic materials. All met...
This paper presents a novel preparation of copper (Cu) deposited titanium dioxide (TiO2) nanotubes i...
Heterojunction composites based on n-type TiO2 nanotubes arrays (TNAs) coupled with p-type Cu2O nano...
Nano-sized polyhedral crystalline Cu2O was evenly loaded throughout the structure of TiO2 nanotube a...
International audienceThird generation solar cells emerged with the aim of developing efficient, eas...
Metallic copper is a dependable co-catalyst for improving photoactivity of TiO2 photocatalysis. Cu@T...
Composite Ti/TiO2/Cu2O electrodes were produced by electrodeposition of p-Cu2O nanoparticles over th...
The use of semiconductors as photoelectrochemical electrodes and photocatalysts has been studied ext...
Abstract TiO2 NSAs/graphene/Cu2O was fabricated on the carbon fiber to use as photocastalysts by coa...
We report on the optimization of electrospun TiO2-CuO composite nanofibers as low-cost and stable ph...
In order to improve the photocatalytic activity of TiO2, we successfully loaded nano-CuO on the TiO2...
The properties of newly synthesized Cu2O/CuO-decorated TiO2/graphene oxide (GO) nanocomposites (NC) ...
Cu2O/TiO2 nanotube heterojunction arrays have been prepared by photoreduction depositing Cu2O nanopa...
A TiO2@Cu2O semiconductor heterostructure with better photochemical response compared to TiO2 was ob...
Energy from renewables (solar, photovoltaic, geothermal), is a major challenge for researchers' effo...
Novel solar cells are being synthesized from sustainable, non-toxic, and economic materials. All met...
This paper presents a novel preparation of copper (Cu) deposited titanium dioxide (TiO2) nanotubes i...
Heterojunction composites based on n-type TiO2 nanotubes arrays (TNAs) coupled with p-type Cu2O nano...
Nano-sized polyhedral crystalline Cu2O was evenly loaded throughout the structure of TiO2 nanotube a...
International audienceThird generation solar cells emerged with the aim of developing efficient, eas...
Metallic copper is a dependable co-catalyst for improving photoactivity of TiO2 photocatalysis. Cu@T...
Composite Ti/TiO2/Cu2O electrodes were produced by electrodeposition of p-Cu2O nanoparticles over th...