CuS thin films were deposited on stainless steel substrates from an aqueous solution of CuSO4. Na2S2O3 and Triethanolamine. Deposited films were characterized by XRD, SEM, EDAX, Raman and Optical measurements. The electrodeposition bath concentration can be used to control the diameter of the electrodeposited nanorods within the range of 35-40 nm. The formation of complexes of copper ions and TEA was found to be a key factor in the nanorods growth process. Films are polycrystalline with hexagonal crystal structure. SEM images indicate that the film surfaces are smooth, homogeneous and well-covered. A new structure of CuS nanorods having length of 5-10 mu m and diameter from 35 to 40 nm has been demonstrated. By changing bath concentration a...
Patterned copper sulfide (Cu x S) microstructures on Si (1 1 1) wafers were successfully fabricated ...
Unique physical-chemical properties of nanostructured materials are explained by the crystal structu...
Copper sulfide (CuS) nanorods with the size of sub-10 nm are synthesized via a facile sol gel method...
In this work the synthesis of copper tin sulfide thin films by electrodeposition is carried out. The...
In this work the synthesis of copper tin sulfide thin films by electrodeposition is carried out. The...
Thin films of CuS were prepared by Successive Ionic Layer And Reaction (SILAR) method from solution ...
AbstractCopper sulfide nanoparticles with a grain dimension between 10nm and 50nm were obtained by a...
Nanocrystalline CuS thin films were fabricated using a metal organic deposition technique taking Cu(...
Isolated and uniform Cu2S nanorods have been prepared in well-aligned large arrays on a copper surfa...
In this work, we report the growth of Copper Zinc Tin Sulfide (CZTS) nano-rods on CZTS thin films. T...
Copper sulfide nanoparticles (CuS) were successfully synthesized by the pulsed plasma in liquid meth...
In this work, we present the influence of the reaction time of a complex substance (trisodium citrat...
Copper tin sulfide thin films were electrodeposited on the indium tin oxide substrate from an aqueou...
In this work, we present the influence of the reaction time of a complex substance (trisodium citrat...
Water-soluble CuS nanocrystals and nanorods were prepared by reacting copper acetate with thioacetam...
Patterned copper sulfide (Cu x S) microstructures on Si (1 1 1) wafers were successfully fabricated ...
Unique physical-chemical properties of nanostructured materials are explained by the crystal structu...
Copper sulfide (CuS) nanorods with the size of sub-10 nm are synthesized via a facile sol gel method...
In this work the synthesis of copper tin sulfide thin films by electrodeposition is carried out. The...
In this work the synthesis of copper tin sulfide thin films by electrodeposition is carried out. The...
Thin films of CuS were prepared by Successive Ionic Layer And Reaction (SILAR) method from solution ...
AbstractCopper sulfide nanoparticles with a grain dimension between 10nm and 50nm were obtained by a...
Nanocrystalline CuS thin films were fabricated using a metal organic deposition technique taking Cu(...
Isolated and uniform Cu2S nanorods have been prepared in well-aligned large arrays on a copper surfa...
In this work, we report the growth of Copper Zinc Tin Sulfide (CZTS) nano-rods on CZTS thin films. T...
Copper sulfide nanoparticles (CuS) were successfully synthesized by the pulsed plasma in liquid meth...
In this work, we present the influence of the reaction time of a complex substance (trisodium citrat...
Copper tin sulfide thin films were electrodeposited on the indium tin oxide substrate from an aqueou...
In this work, we present the influence of the reaction time of a complex substance (trisodium citrat...
Water-soluble CuS nanocrystals and nanorods were prepared by reacting copper acetate with thioacetam...
Patterned copper sulfide (Cu x S) microstructures on Si (1 1 1) wafers were successfully fabricated ...
Unique physical-chemical properties of nanostructured materials are explained by the crystal structu...
Copper sulfide (CuS) nanorods with the size of sub-10 nm are synthesized via a facile sol gel method...