Cu2xS nanocrystals (NCs) have been recently exploited in several fields, ranging from energy conversion tobiomedical applications, due to their intriguing geometry and phase-dependent semiconductor and near-infrared plasmonic properties. Although advances have been made in their synthesis by hot-injection at thepresent stage of research, the unexpected sizes and shapes of the Cu2xS NCs and broad polydispersity stillrepresentcriticalissuesthatmustbeavoided,astheyareresponsiblefortheunpredictableopticalresponseand undesirable broadening of the spectroscopic feature. This study intends to explore the influence that thereactantsusedintheCu2xS NC synthesis have in the modulation of size, shape and phase. Furthermore, weaim to provide an effectiv...
In colloidal Cu2-xS nanocrystal synthesis, thiols are often used as organic ligands and the sulfur s...
Water-soluble CuS nanocrystals and nanorods were prepared by reacting copper acetate with thioacetam...
Nearly mono-dispersed TOPO-capped copper sulphide nanocrystals of ca. 4.5 nm (diameter) have been sy...
Cu2xS nanocrystals (NCs) have been recently exploited in several fields, ranging from energy convers...
We report the synthesis and structural studies of copper sulfide nanocrystals from copper (II) dithi...
We report the synthesis and structural studies of copper sulfide nanocrystals from copper (II) dithi...
A simple one-pot method is developed to prepare size-and shape-controlled copper(I) sulfide (Cu2S) n...
We report the synthesis and structural studies of copper sulfide nanocrystals from copper(II) dithio...
In this paper, a new method for synthesizing non-aqueous copper sulfide nanocrystals with different ...
The growing interest in nanotechnology stems from its promise of developing new materials and device...
Semiconductor materials are commonplace in everyday life and most people could not live without them...
The reaction of CuCl2 center dot 2H(2)O with the methyl ester of 3,5-dimethyl pyrazote-1-dithioic ac...
Pure-phase Cu2−xS (x = 1, 0.2) nanoparticles have been synthesized by the thermal decomposition of c...
Because of the rich polymorphs and lower diffusion energy barriers of copper chalcogenide systems, t...
We demonstrate a robust protocol for preparing monodisperse copper–tin–sulfide (CTS) nanocrystals (N...
In colloidal Cu2-xS nanocrystal synthesis, thiols are often used as organic ligands and the sulfur s...
Water-soluble CuS nanocrystals and nanorods were prepared by reacting copper acetate with thioacetam...
Nearly mono-dispersed TOPO-capped copper sulphide nanocrystals of ca. 4.5 nm (diameter) have been sy...
Cu2xS nanocrystals (NCs) have been recently exploited in several fields, ranging from energy convers...
We report the synthesis and structural studies of copper sulfide nanocrystals from copper (II) dithi...
We report the synthesis and structural studies of copper sulfide nanocrystals from copper (II) dithi...
A simple one-pot method is developed to prepare size-and shape-controlled copper(I) sulfide (Cu2S) n...
We report the synthesis and structural studies of copper sulfide nanocrystals from copper(II) dithio...
In this paper, a new method for synthesizing non-aqueous copper sulfide nanocrystals with different ...
The growing interest in nanotechnology stems from its promise of developing new materials and device...
Semiconductor materials are commonplace in everyday life and most people could not live without them...
The reaction of CuCl2 center dot 2H(2)O with the methyl ester of 3,5-dimethyl pyrazote-1-dithioic ac...
Pure-phase Cu2−xS (x = 1, 0.2) nanoparticles have been synthesized by the thermal decomposition of c...
Because of the rich polymorphs and lower diffusion energy barriers of copper chalcogenide systems, t...
We demonstrate a robust protocol for preparing monodisperse copper–tin–sulfide (CTS) nanocrystals (N...
In colloidal Cu2-xS nanocrystal synthesis, thiols are often used as organic ligands and the sulfur s...
Water-soluble CuS nanocrystals and nanorods were prepared by reacting copper acetate with thioacetam...
Nearly mono-dispersed TOPO-capped copper sulphide nanocrystals of ca. 4.5 nm (diameter) have been sy...