Ultrathin films of CuS and CuO have been obtained at the liquid-liquid interface by the reaction of copper cupferronate solution in toluene with Na2S or NaOH in aqueous solution. The films are generally single crystalline and around 40 nm thick. The thickness and crystallinity of the films are determined by the reactant concentrations and reaction conditions. The films have been characterized by electron microscopy and atomic force microscopy besides X-ray diffraction. Sonication of the films produces nanocrystals and nanorods which are also single crystalline
Continuous epitaxial films of cuprous oxide (Cu2O) have been formed by the thermal oxidation of 1.5-...
International audienceIn this study, nanostructured cupric oxide (CuO) thin films were deposited usi...
Thin films of CuS were prepared by Successive Ionic Layer And Reaction (SILAR) method from solution ...
Ultrathin films of CuS and CuO have been obtained at the liquid-liquid interface by the reaction of ...
Ultrathin films of CuS and CuO have been obtained at the liquid-liquid interface by the reaction of ...
The air-water interface has traditionally been employed to prepare particle assemblies and films of ...
The air-water interface has traditionally been employed to prepare particle assemblies and films of ...
The air–water interface has traditionally been employed to prepare particle assemblies and films of ...
The air-water interface has traditionally been employed to prepare particle assemblies and films of ...
The air-water interface has traditionally been employed to prepare particle assemblies and films of ...
We report here the results of a study to understand the formation mechanism of single crystals of th...
Unlike the air–water interface, the organic-aqueous (liquid–liquid) interface has not been exploited...
Ultra-thin films of ZnS have been prepared by the reaction of zinc cupferronate or zinc stearate in ...
Hierarchical CuO nanostructures (urchin-like and grassy island structure) were successfully synthesi...
Hierarchical CuO nanostructures (urchin-like and grassy island structure) were successfully synthesi...
Continuous epitaxial films of cuprous oxide (Cu2O) have been formed by the thermal oxidation of 1.5-...
International audienceIn this study, nanostructured cupric oxide (CuO) thin films were deposited usi...
Thin films of CuS were prepared by Successive Ionic Layer And Reaction (SILAR) method from solution ...
Ultrathin films of CuS and CuO have been obtained at the liquid-liquid interface by the reaction of ...
Ultrathin films of CuS and CuO have been obtained at the liquid-liquid interface by the reaction of ...
The air-water interface has traditionally been employed to prepare particle assemblies and films of ...
The air-water interface has traditionally been employed to prepare particle assemblies and films of ...
The air–water interface has traditionally been employed to prepare particle assemblies and films of ...
The air-water interface has traditionally been employed to prepare particle assemblies and films of ...
The air-water interface has traditionally been employed to prepare particle assemblies and films of ...
We report here the results of a study to understand the formation mechanism of single crystals of th...
Unlike the air–water interface, the organic-aqueous (liquid–liquid) interface has not been exploited...
Ultra-thin films of ZnS have been prepared by the reaction of zinc cupferronate or zinc stearate in ...
Hierarchical CuO nanostructures (urchin-like and grassy island structure) were successfully synthesi...
Hierarchical CuO nanostructures (urchin-like and grassy island structure) were successfully synthesi...
Continuous epitaxial films of cuprous oxide (Cu2O) have been formed by the thermal oxidation of 1.5-...
International audienceIn this study, nanostructured cupric oxide (CuO) thin films were deposited usi...
Thin films of CuS were prepared by Successive Ionic Layer And Reaction (SILAR) method from solution ...