International audienceThermoelectric nanowires have been predicted to have superior properties compared to their bulk counterparts due to quantum confinement. We present the synthesis of chalcogenide nanowires A2B3 (A¼Bi, Sb; B¼S, Se, Te) and PbB (B¼S, Se, Te) by electrochemical deposition into highly ordered porous Al2O3 membranes. The narrow pore size distribution of the templates reproducibly yields very homogeneous nanowires upon electrodeposition into the pores. The thermoelectric nanowires presented here were deposited from nonaqueous electrolytes based on Bi3þ and S (and their heavier counterparts). The transmission electron microscopy investigations on released nanowires show the homogeneous growth behavior of the material.Wewill pr...
Three-dimensional (3D) assemblies of nanostructures are gaining more and more attention during the r...
It has been suggested by theoretical calculations that the thermoelectric figure of merit of nanowir...
Bismuth telluride (Bi2Te3) is the thermoelectric reference material at room temperature. Its figure ...
Thermoelectric material Bi2Te3 nanowire arrays have been successfully prepared by pulsed electrochem...
We report the room-temperature growth of vertically aligned ternary Bi$_{2-x}$Sb$_x$Te$_3$ nanowires...
We report the room-temperature growth of vertically aligned ternary Bi2−xSbxTe3 nanowires of diamete...
Bismuth chalcogenides are the best thermoelectric materials at room temperature. Nanostructuring is ...
Bismuth chalcogenides are the best thermoelectric materials at room temperature. Nanostructuring is ...
Increasing worldwide energy demand over the next 25 years will drive development of high-efficiency,...
Nanostructuration of thermoelectric materials seems to be the solution for their low efficiency gene...
Nanostructuration of thermoelectric materials seems to be the solution for their low efficiency gene...
Thermoelectric devices can be used to harvest waste heat energy lost during the operation of mechani...
Thermoelectric material Bi1-xSbx nanowire arrays have been successfully synthesized by pulsed electr...
International audienceArrays of thermoelectric bismuth telluride (Bi2Te3) nanowires were grown into ...
We present the synthesis of Bi1–xSbx nanowires with controlled composition between x = 0.05 and x = ...
Three-dimensional (3D) assemblies of nanostructures are gaining more and more attention during the r...
It has been suggested by theoretical calculations that the thermoelectric figure of merit of nanowir...
Bismuth telluride (Bi2Te3) is the thermoelectric reference material at room temperature. Its figure ...
Thermoelectric material Bi2Te3 nanowire arrays have been successfully prepared by pulsed electrochem...
We report the room-temperature growth of vertically aligned ternary Bi$_{2-x}$Sb$_x$Te$_3$ nanowires...
We report the room-temperature growth of vertically aligned ternary Bi2−xSbxTe3 nanowires of diamete...
Bismuth chalcogenides are the best thermoelectric materials at room temperature. Nanostructuring is ...
Bismuth chalcogenides are the best thermoelectric materials at room temperature. Nanostructuring is ...
Increasing worldwide energy demand over the next 25 years will drive development of high-efficiency,...
Nanostructuration of thermoelectric materials seems to be the solution for their low efficiency gene...
Nanostructuration of thermoelectric materials seems to be the solution for their low efficiency gene...
Thermoelectric devices can be used to harvest waste heat energy lost during the operation of mechani...
Thermoelectric material Bi1-xSbx nanowire arrays have been successfully synthesized by pulsed electr...
International audienceArrays of thermoelectric bismuth telluride (Bi2Te3) nanowires were grown into ...
We present the synthesis of Bi1–xSbx nanowires with controlled composition between x = 0.05 and x = ...
Three-dimensional (3D) assemblies of nanostructures are gaining more and more attention during the r...
It has been suggested by theoretical calculations that the thermoelectric figure of merit of nanowir...
Bismuth telluride (Bi2Te3) is the thermoelectric reference material at room temperature. Its figure ...