Klockmannite copper selenide nanosheets (CuSe NSs) are synthesized by a facile microwave-assisted method and fully characterized. The nanosheets have smooth surface and hexagonal shape. The lateral size is 200-500 nm x 400-800 nm and the thickness is 55 +/- 20 nm. The current-voltage characteristics of CuSe NS films show unique Ohmic and high-conducting behaviors, comparable to the thermally-deposited gold electrode. The high electrical conductivity of CuSe NSs implies their promising applications in printed electronics and nanodevices. Moreover, the local electrical variation is observed, for the first time, within an individual CuSe NS at low bias voltages (0.1 similar to 3 V) by conductive atomic force microscopy (C-AFM). This is ascribe...
Recently, copper chalcogenides have attracted great attention due to their potential application for...
Morphology is a key factor in designing novel nanomaterials with controlled functional properties fo...
As a p-type multifunctional semiconductor, CuSe nanostructures show great promise in optoelectronic,...
A facile and high yield synthesis route was developed for the fabrication of bulk nanostructured cop...
Grams of copper selenides (Cu2-xSe) were prepared from commercial copper and selenium powders in the...
Foreign ions are of significant importance in controlling and modulating the morphology of semicondu...
Foreign ions are of significant importance in controlling and modulating the morphology of semicondu...
Copper selenide (CuSe) nanoparticles were successfully prepared via chemical precipitation method at...
The influence of chelating agent on structural and optical properties of copper selenide nanoparticl...
Single-phase and (0001)-oriented hexagonal klockmannite CuSe nanoplates were successfully synthesize...
Thermoelectric devices are an emerging green technology that turn heat into electricity or vice vers...
WOS:000419363800089Hot injection synthesis route has been successfully applied for the preparation o...
We report the synthesis of klockmannite (CuSe) via a three-probe electrochemical set-up (chronoamper...
Our current work aims to enhance the thermoelectric properties of p-type copper selenide (Cu2Se), a ...
Grams of copper selenides (Cu<sub>2–<i>x</i></sub>Se) were prepared from commercial copper and selen...
Recently, copper chalcogenides have attracted great attention due to their potential application for...
Morphology is a key factor in designing novel nanomaterials with controlled functional properties fo...
As a p-type multifunctional semiconductor, CuSe nanostructures show great promise in optoelectronic,...
A facile and high yield synthesis route was developed for the fabrication of bulk nanostructured cop...
Grams of copper selenides (Cu2-xSe) were prepared from commercial copper and selenium powders in the...
Foreign ions are of significant importance in controlling and modulating the morphology of semicondu...
Foreign ions are of significant importance in controlling and modulating the morphology of semicondu...
Copper selenide (CuSe) nanoparticles were successfully prepared via chemical precipitation method at...
The influence of chelating agent on structural and optical properties of copper selenide nanoparticl...
Single-phase and (0001)-oriented hexagonal klockmannite CuSe nanoplates were successfully synthesize...
Thermoelectric devices are an emerging green technology that turn heat into electricity or vice vers...
WOS:000419363800089Hot injection synthesis route has been successfully applied for the preparation o...
We report the synthesis of klockmannite (CuSe) via a three-probe electrochemical set-up (chronoamper...
Our current work aims to enhance the thermoelectric properties of p-type copper selenide (Cu2Se), a ...
Grams of copper selenides (Cu<sub>2–<i>x</i></sub>Se) were prepared from commercial copper and selen...
Recently, copper chalcogenides have attracted great attention due to their potential application for...
Morphology is a key factor in designing novel nanomaterials with controlled functional properties fo...
As a p-type multifunctional semiconductor, CuSe nanostructures show great promise in optoelectronic,...