CuO is a versatile p-type material for energy applications capable of imparting diverse functionalities by manipulating its band-energy diagram. We present ultra-small quantum confined cupric oxide nanoparticles (CuO NPs) synthesized via a simple one-step environmentally friendly atmospheric pressure microplasma synthesis process. The proposed method, based on the use of a hybrid plasma-liquid cell, enables the synthesis of CuO NPs directly from solid metal copper in ethanol with neither surfactants nor reducing agents. CuO NPs films are then used for the first time in all-inorganic third generation solar cell devices demonstrating highly effective functionalities as blocking layer
This work reports the synthesis of cuprous oxide (Cu2O) nanoparticles (NP) and further application i...
Vertically aligned CuO nanorod arrays on copper electrodes with diameters of similar to 5 nm and len...
We report a trouble-free chemical synthesis of copper oxide (CuO) nanoflowers on flexible copper foi...
CuO is a versatile p-type material for energy applications capable of imparting diverse functionalit...
CuO is a versatile p-type material for energy applications capable of imparting diverse functionalit...
Monodisperse Cu and Cu2O nanoparticles (NPs) are synthesized using tetradecylphosphonic acid as a ca...
Monodisperse Cu and Cu2O nanoparticles (NPs) are synthesized using tetradecylphosphonic acid as a ca...
Nanoscale metal oxide materials have been attracting much attention because of their unique size- an...
A simple low cost chemical route has been used to synthesize cupric oxide nanoparticles. The synthes...
A new synthesis route to obtain high-purity cupric oxide, CuO, using the hydrothermal reaction of co...
A new synthesis route to obtain high-purity cupric oxide, CuO, using the hydrothermal reaction of co...
Cuprite (Cu2O) and tenorite (CuO) have been extensively studied because of their potential use in se...
AbstractCupric oxide (CuO) is one of the most promising p-type semiconducting materials used in p-n ...
Copper oxide is a compound that has been considered significant owing to its many advantages such as...
AbstractCupric oxide (CuO) is one of the most promising p-type semiconducting materials used in p-n ...
This work reports the synthesis of cuprous oxide (Cu2O) nanoparticles (NP) and further application i...
Vertically aligned CuO nanorod arrays on copper electrodes with diameters of similar to 5 nm and len...
We report a trouble-free chemical synthesis of copper oxide (CuO) nanoflowers on flexible copper foi...
CuO is a versatile p-type material for energy applications capable of imparting diverse functionalit...
CuO is a versatile p-type material for energy applications capable of imparting diverse functionalit...
Monodisperse Cu and Cu2O nanoparticles (NPs) are synthesized using tetradecylphosphonic acid as a ca...
Monodisperse Cu and Cu2O nanoparticles (NPs) are synthesized using tetradecylphosphonic acid as a ca...
Nanoscale metal oxide materials have been attracting much attention because of their unique size- an...
A simple low cost chemical route has been used to synthesize cupric oxide nanoparticles. The synthes...
A new synthesis route to obtain high-purity cupric oxide, CuO, using the hydrothermal reaction of co...
A new synthesis route to obtain high-purity cupric oxide, CuO, using the hydrothermal reaction of co...
Cuprite (Cu2O) and tenorite (CuO) have been extensively studied because of their potential use in se...
AbstractCupric oxide (CuO) is one of the most promising p-type semiconducting materials used in p-n ...
Copper oxide is a compound that has been considered significant owing to its many advantages such as...
AbstractCupric oxide (CuO) is one of the most promising p-type semiconducting materials used in p-n ...
This work reports the synthesis of cuprous oxide (Cu2O) nanoparticles (NP) and further application i...
Vertically aligned CuO nanorod arrays on copper electrodes with diameters of similar to 5 nm and len...
We report a trouble-free chemical synthesis of copper oxide (CuO) nanoflowers on flexible copper foi...