Platelet-shaped copper sulfide nanocrystals (NCs) with tunable Cu stoichiometry were prepared from Cu-rich covellite (Cu<sub>1.1</sub>S) nanoplates through their reaction with a Cu(I) complex ([Cu(CH<sub>3</sub>CN)<sub>4</sub>]PF<sub>6</sub>) at room temperature. Starting from a common sample, by this approach it is possible to access a range of compositions in these NCs, varying from Cu<sub>1.1</sub>S up to Cu<sub>2</sub>S, each characterized by a different optical response: from the metallic covellite, with a high density of free carriers and strong localized surface plasmon resonance (LSPR), up to Cu<sub>2</sub>S NCs with no LSPR. In all these NCs the valency of Cu in the lattice stays always close to +1, while the average −1 valency ...
Copper-sulfide nanocrystals can accommodate considerable densities of delocalized valence-band holes...
Controllable synthesis of copper chalcogenide nanocrystals (NCs), including desired geometry, compos...
We present a novel, straightforward, and reproducible method to form tailored CuS@Au hybrid structur...
Synthesis of copper sulfide-based nanomaterials by cation incorporation into copper deficient copper...
In the realm of semiconductor nanomaterials, a crystal lattice heavily doped with cation/anion vacan...
Preparation of nanomaterials with controllable sizes and shapes at ambient conditions, without heati...
We demonstrate a robust protocol for preparing monodisperse copper–tin–sulfide (CTS) nanocrystals (N...
We studied the structural and compositional transformations of colloidal covellite (CuS) nanocrystal...
We studied the structural and compositional transformations of colloidal covellite (CuS) nanocrystal...
We demonstrate the stabilization of the localized surface plasmon resonance (LSPR) in a semiconducto...
We demonstrate the stabilization of the localized surface plasmon resonance (LSPR) in a semiconducto...
Colloidal synthesis of copper tin sulfide (CTS) nanocrystals has been of great interest due to their...
The creation of novel metal sulfide nanostructures and heterostructures by incorporating heterocatio...
Here we report a facile approach to synthesize copper chalcogenide (Cu<sub>2–<i>x</i></sub>S, Cu<sub...
Control over the doping density in copper sulfide nanocrystals is of great importance and determines...
Copper-sulfide nanocrystals can accommodate considerable densities of delocalized valence-band holes...
Controllable synthesis of copper chalcogenide nanocrystals (NCs), including desired geometry, compos...
We present a novel, straightforward, and reproducible method to form tailored CuS@Au hybrid structur...
Synthesis of copper sulfide-based nanomaterials by cation incorporation into copper deficient copper...
In the realm of semiconductor nanomaterials, a crystal lattice heavily doped with cation/anion vacan...
Preparation of nanomaterials with controllable sizes and shapes at ambient conditions, without heati...
We demonstrate a robust protocol for preparing monodisperse copper–tin–sulfide (CTS) nanocrystals (N...
We studied the structural and compositional transformations of colloidal covellite (CuS) nanocrystal...
We studied the structural and compositional transformations of colloidal covellite (CuS) nanocrystal...
We demonstrate the stabilization of the localized surface plasmon resonance (LSPR) in a semiconducto...
We demonstrate the stabilization of the localized surface plasmon resonance (LSPR) in a semiconducto...
Colloidal synthesis of copper tin sulfide (CTS) nanocrystals has been of great interest due to their...
The creation of novel metal sulfide nanostructures and heterostructures by incorporating heterocatio...
Here we report a facile approach to synthesize copper chalcogenide (Cu<sub>2–<i>x</i></sub>S, Cu<sub...
Control over the doping density in copper sulfide nanocrystals is of great importance and determines...
Copper-sulfide nanocrystals can accommodate considerable densities of delocalized valence-band holes...
Controllable synthesis of copper chalcogenide nanocrystals (NCs), including desired geometry, compos...
We present a novel, straightforward, and reproducible method to form tailored CuS@Au hybrid structur...