AbstractWe report the synthesis and structural studies of copper sulfide nanocrystals from copper(II) dithiocarbamate single molecule precursors. The optical studies of the as-prepared copper sulfide nanoparticles were carried out using UV–Visible and photoluminescence spectroscopy. The absorption spectra show absorption band edges at 287nm and exhibit considerable blue shift that could be ascribed to the quantum confinement effects as a result of the small crystallite sizes of the nanoparticles and the photoluminescence spectra show emission curves that are red shifted with respect to the absorption band edges. The structural studies were carried out using powder X-ray diffraction, transmission electron microscopy, scanning electron micros...
The reaction of CuCl2 center dot 2H(2)O with the methyl ester of 3,5-dimethyl pyrazote-1-dithioic ac...
ABSTRACT: A simple, template-free and mild solution chemistry route was employed to synthesize diver...
Department of Nuclear Physics, Department of Inorganic Chemistry, University of Madras, Guindy Campu...
We report the synthesis and structural studies of copper sulfide nanocrystals from copper(II) dithio...
We report the synthesis and structural studies of copper sulfide nanocrystals from copper (II) dithi...
Nearly mono-dispersed TOPO-capped copper sulphide nanocrystals of ca. 4.5 nm (diameter) have been sy...
SummaryThis paper demonstrates the synthesis of CuS nanoparticles using sol–gel route in the presenc...
Masters Degree. University of KwaZulu Natal, Pietermaritzburg.Eight dithiocarbamate ligands were syn...
AbstractCopper sulfide nanoparticles with a grain dimension between 10nm and 50nm were obtained by a...
AbstractA simple, ethylene glycol chemical reduction method was employed to synthesize CuS–Cu2S nano...
Copper sulfide describes a group of chemical compounds consisting of copper and sulfur that can exis...
A simple one-pot method is developed to prepare size-and shape-controlled copper(I) sulfide (Cu2S) n...
Surfactantless synthesis of copper sulfide nanoparticles (NPs) with varied morphologies such as hexa...
Pure-phase Cu2−xS (x = 1, 0.2) nanoparticles have been synthesized by the thermal decomposition of c...
Cu2xS nanocrystals (NCs) have been recently exploited in several fields, ranging from energy convers...
The reaction of CuCl2 center dot 2H(2)O with the methyl ester of 3,5-dimethyl pyrazote-1-dithioic ac...
ABSTRACT: A simple, template-free and mild solution chemistry route was employed to synthesize diver...
Department of Nuclear Physics, Department of Inorganic Chemistry, University of Madras, Guindy Campu...
We report the synthesis and structural studies of copper sulfide nanocrystals from copper(II) dithio...
We report the synthesis and structural studies of copper sulfide nanocrystals from copper (II) dithi...
Nearly mono-dispersed TOPO-capped copper sulphide nanocrystals of ca. 4.5 nm (diameter) have been sy...
SummaryThis paper demonstrates the synthesis of CuS nanoparticles using sol–gel route in the presenc...
Masters Degree. University of KwaZulu Natal, Pietermaritzburg.Eight dithiocarbamate ligands were syn...
AbstractCopper sulfide nanoparticles with a grain dimension between 10nm and 50nm were obtained by a...
AbstractA simple, ethylene glycol chemical reduction method was employed to synthesize CuS–Cu2S nano...
Copper sulfide describes a group of chemical compounds consisting of copper and sulfur that can exis...
A simple one-pot method is developed to prepare size-and shape-controlled copper(I) sulfide (Cu2S) n...
Surfactantless synthesis of copper sulfide nanoparticles (NPs) with varied morphologies such as hexa...
Pure-phase Cu2−xS (x = 1, 0.2) nanoparticles have been synthesized by the thermal decomposition of c...
Cu2xS nanocrystals (NCs) have been recently exploited in several fields, ranging from energy convers...
The reaction of CuCl2 center dot 2H(2)O with the methyl ester of 3,5-dimethyl pyrazote-1-dithioic ac...
ABSTRACT: A simple, template-free and mild solution chemistry route was employed to synthesize diver...
Department of Nuclear Physics, Department of Inorganic Chemistry, University of Madras, Guindy Campu...