Transition metal chalcogenides (TMCs) with atomically minute structure have shown excessive potential for their optoelectronics field applications and their counterparts. TMCs unique layer dependent properties have pinched increasing consideration of scientists. Here, the high yield synthesis of atomically minute Cu0.2Sn0.8Se nanoparticles has been reported. The nanoparticles are synthesised by sonochemical exfoliation technique. The exfoliated Cu0.2Sn0.8Se nanoparticles have orthorhombic lattice structure which is confirmed from powder X-ray Diffraction with Pnma space group. The lateral morphology of the assynthesized nanoparticles examined under transmission electron microscopy showed them to be of uniform spherical shape. The selected a...
WOS:000698560600005In recent years, the penternary nanocrystals synthesized as an alternative to Pt ...
AbstractWe report the synthesis and structural studies of copper sulfide nanocrystals from copper(II...
Cu2CoSnS4 (CCTS) quaternary semiconducting nanoparticles with size distribution from 20 nm to 60 nm ...
Transition metal chalcogenides (TMCs) with atomically minute structure have shown excessive potentia...
This study reports on the synthesis of Cu2S nanoparticles via an ultrasonic method by employing Na2...
Single-step ultrasound-assisted synthesis of Copper Zinc Tin Sulfide nanoparticles (CZTS) has been s...
AbstractCopper sulphide nanoparticles for solar cell applications were synthesized by a single step ...
Nearly mono-dispersed TOPO-capped copper sulphide nanocrystals of ca. 4.5 nm (diameter) have been sy...
Nanoparticles of chalcopyrites copper indium gallium sul de (CuInxGa1xS2 or CIGS) and copper indium ...
The incorporation of plasmonic metal nanostructures into semiconducting chalcogenides, in the form o...
xi, 89 pages : color illustrationsPolyU Library Call No.: [THS] LG51 .H577M ISE 2017 CheungIn this t...
Doped semiconductors supporting localized surface plasmon resonances, such as nonstoichiometric copp...
Department of Nuclear Physics, Department of Inorganic Chemistry, University of Madras, Guindy Campu...
SummaryThis paper demonstrates the synthesis of CuS nanoparticles using sol–gel route in the presenc...
Controllable synthesis of copper chalcogenide nanocrystals (NCs), including desired geometry, compos...
WOS:000698560600005In recent years, the penternary nanocrystals synthesized as an alternative to Pt ...
AbstractWe report the synthesis and structural studies of copper sulfide nanocrystals from copper(II...
Cu2CoSnS4 (CCTS) quaternary semiconducting nanoparticles with size distribution from 20 nm to 60 nm ...
Transition metal chalcogenides (TMCs) with atomically minute structure have shown excessive potentia...
This study reports on the synthesis of Cu2S nanoparticles via an ultrasonic method by employing Na2...
Single-step ultrasound-assisted synthesis of Copper Zinc Tin Sulfide nanoparticles (CZTS) has been s...
AbstractCopper sulphide nanoparticles for solar cell applications were synthesized by a single step ...
Nearly mono-dispersed TOPO-capped copper sulphide nanocrystals of ca. 4.5 nm (diameter) have been sy...
Nanoparticles of chalcopyrites copper indium gallium sul de (CuInxGa1xS2 or CIGS) and copper indium ...
The incorporation of plasmonic metal nanostructures into semiconducting chalcogenides, in the form o...
xi, 89 pages : color illustrationsPolyU Library Call No.: [THS] LG51 .H577M ISE 2017 CheungIn this t...
Doped semiconductors supporting localized surface plasmon resonances, such as nonstoichiometric copp...
Department of Nuclear Physics, Department of Inorganic Chemistry, University of Madras, Guindy Campu...
SummaryThis paper demonstrates the synthesis of CuS nanoparticles using sol–gel route in the presenc...
Controllable synthesis of copper chalcogenide nanocrystals (NCs), including desired geometry, compos...
WOS:000698560600005In recent years, the penternary nanocrystals synthesized as an alternative to Pt ...
AbstractWe report the synthesis and structural studies of copper sulfide nanocrystals from copper(II...
Cu2CoSnS4 (CCTS) quaternary semiconducting nanoparticles with size distribution from 20 nm to 60 nm ...