The air-water interface has traditionally been employed to prepare particle assemblies and films of metals and semiconductors. The interface between water and an organic liquid, however, has not been investigated sufficiently for possible use in preparing nanocrystals and thin films of materials. In this article, we demonstrate the use of the liquid-liquid interface as a medium for preparing ultrathin films of metals, chalcogenides and oxides. The method involves the reaction at the interface between a metal-organic compound in the organic layer and an appropriate reagent for reduction, sulfidation, etc. in the aqueous layer. Some of the materials discussed are nanocrystalline films of gold, CuS, CuSe, CuO, and Cu(OH)(2) formed at the l...
Chemical entities with structure on the nanometer scale have inspired great interest from fundamenta...
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 ...
Unlike the air–water interface, the organic-aqueous (liquid–liquid) interface has not been exploited...
The interface between water and an organic liquid has been exploited to prepare nanocrystals of CdS....
The interface between water and an organic liquid has been exploited to prepare nanocrystals of CdS....
The interface between water and an organic liquid has been exploited to prepare nanocrystals of CdS....
Films of nanocrystals such as Au, Ag and Pd, semiconducting sulphides such as CdS, ZnS and CoS, and ...
Films of nanocrystals such as Au, Ag and Pd, semiconducting sulphides such as CdS, ZnS and CoS, and ...
Nanocrystalline films of Au, Ag, and Cu have been prepared at the toluene-water interface by the int...
We report here the results of a study to understand the formation mechanism of single crystals of th...
Chemical entities with structure on the nanometer scale have inspired great interest from fundamenta...
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 ...
Unlike the air–water interface, the organic-aqueous (liquid–liquid) interface has not been exploited...
The interface between water and an organic liquid has been exploited to prepare nanocrystals of CdS....
The interface between water and an organic liquid has been exploited to prepare nanocrystals of CdS....
The interface between water and an organic liquid has been exploited to prepare nanocrystals of CdS....
Films of nanocrystals such as Au, Ag and Pd, semiconducting sulphides such as CdS, ZnS and CoS, and ...
Films of nanocrystals such as Au, Ag and Pd, semiconducting sulphides such as CdS, ZnS and CoS, and ...
Nanocrystalline films of Au, Ag, and Cu have been prepared at the toluene-water interface by the int...
We report here the results of a study to understand the formation mechanism of single crystals of th...
Chemical entities with structure on the nanometer scale have inspired great interest from fundamenta...
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 ...