Copper chalcogenide nanoparticles (NPs) represent a promising material for solar energy conversion, electrical charge storage, and plasmonic devices. However, it is difficult to achieve high-quality NP dispersions in experimentally convenient and technologically preferred aqueous media. Also problematic is the transition from NP dispersion to continuously crystalline nanoscale materials, for instance, nanowires, nanoribbons, or similar high aspect ratio nano/microstructures capable of charge transport necessary for such applications. All previous examples of copper sulfide assemblies contained insulating gaps between NPs. Here we show that aqueous synthesis of high-quality monodispersed high-chalcocite β-Cu<sub>2</sub>S NPs, with sizes from...
In this paper report on the synthesis of copper and zinc sulfide nanocrystals (NCs) via the formatio...
Copper sulphide materials have received great attention due to their low bandgap semiconducting prop...
We demonstrate a robust protocol for preparing monodisperse copper–tin–sulfide (CTS) nanocrystals (N...
Nanostructured copper sulfides have attracted much attention due to their unique electronic and opti...
Determination of the phase diagrams for the nanocrystalline forms of materials is crucial for our un...
Determination of the phase diagrams for the nanocrystalline forms of materials is crucial for our un...
Over the past few years, colloidal copper chalcogenide nanocrystals (NCs) have emerged as promising ...
Determination of the phase diagrams for the nanocrystalline forms of materials is crucial for our un...
Semiconductor materials are commonplace in everyday life and most people could not live without them...
Determination of the phase diagrams for the nanocrystalline forms of materials is crucial for our un...
National Basic Research Program of China [2012CB933103]; National Outstanding Youth Science Foundati...
A simple one-pot method is developed to prepare size-and shape-controlled copper(I) sulfide (Cu2S) n...
In this dissertation, fine control over the morphology and composition of a nanostructured semicondu...
We successfully utilize the concept of coalescence and room-temperature sintering to prepare morphol...
We successfully utilize the concept of coalescence and room-temperature sintering to prepare morphol...
In this paper report on the synthesis of copper and zinc sulfide nanocrystals (NCs) via the formatio...
Copper sulphide materials have received great attention due to their low bandgap semiconducting prop...
We demonstrate a robust protocol for preparing monodisperse copper–tin–sulfide (CTS) nanocrystals (N...
Nanostructured copper sulfides have attracted much attention due to their unique electronic and opti...
Determination of the phase diagrams for the nanocrystalline forms of materials is crucial for our un...
Determination of the phase diagrams for the nanocrystalline forms of materials is crucial for our un...
Over the past few years, colloidal copper chalcogenide nanocrystals (NCs) have emerged as promising ...
Determination of the phase diagrams for the nanocrystalline forms of materials is crucial for our un...
Semiconductor materials are commonplace in everyday life and most people could not live without them...
Determination of the phase diagrams for the nanocrystalline forms of materials is crucial for our un...
National Basic Research Program of China [2012CB933103]; National Outstanding Youth Science Foundati...
A simple one-pot method is developed to prepare size-and shape-controlled copper(I) sulfide (Cu2S) n...
In this dissertation, fine control over the morphology and composition of a nanostructured semicondu...
We successfully utilize the concept of coalescence and room-temperature sintering to prepare morphol...
We successfully utilize the concept of coalescence and room-temperature sintering to prepare morphol...
In this paper report on the synthesis of copper and zinc sulfide nanocrystals (NCs) via the formatio...
Copper sulphide materials have received great attention due to their low bandgap semiconducting prop...
We demonstrate a robust protocol for preparing monodisperse copper–tin–sulfide (CTS) nanocrystals (N...