Thermoelectric material Bi2Te3 nanowire arrays have been successfully prepared by pulsed electrochemical deposition into the nanochannels of porous anodic alumina membranes. X-ray diffraction analyses show that the as-synthesized nanowires have a highly preferential orientation. Scanning electron microscopy, transmission electron microscopy, and high-resolution transmission electron microscopy observations indicate that the high-filling-rate and uniform Bi2Te3 nanowires are single crystalline. Energy dispersive spectrometer analyses indicate that the compositions of the nanowires can be controlled by changing the potentials and the solution concentrations. The electrical resistance measurements indicate that the resistances increase with de...
Bismuth telluride (Bi2Te3) nanowire arrays with a uniform length and controlled composition were ele...
Multilayer nanowire arrays of a new heterogeneous thermoelectric material, Bi(2)Te(2)Se/Te, were suc...
Polycrystalline Bi2Te3 nanowires are electrochemically grown in ion track-etched polycarbonate membr...
International audienceArrays of thermoelectric bismuth telluride (Bi2Te3) nanowires were grown into ...
Thermoelectric material Bi1-xSbx nanowire arrays have been successfully synthesized by pulsed electr...
Bi2Te3 nanowires with diameters ranging from 25 to 270 nm, ultra-high aspect ratio, and uniform grow...
We report the fabrication of Bi2Te3 nanowires with diameters as small as 15 nm, which is comparable ...
We report the fabrication of Bi2Te3 nanowires with diameters as small as 15 nm, which is comparable ...
Arrays of Bi1-xSbx nanowire with various compositions (0 <= x <= 1) are grown in etched ion-track me...
Arrays of Bi1-xSbx nanowire with various compositions (0 <= x <= 1) are grown in etched ion-track me...
Self-standing Bi2Te3 networks of interconnected nanowires were fabricated in three-dimensional porou...
Bismuth telluride (Bi2Te3) is the thermoelectric reference material at room temperature. Its figure ...
Bismuth telluride (Bi2Te3) is the thermoelectric reference material at room temperature. Its figure ...
We report the room-temperature growth of vertically aligned ternary Bi2−xSbxTe3 nanowires of diamete...
International audienceThermoelectric nanowires have been predicted to have superior properties compa...
Bismuth telluride (Bi2Te3) nanowire arrays with a uniform length and controlled composition were ele...
Multilayer nanowire arrays of a new heterogeneous thermoelectric material, Bi(2)Te(2)Se/Te, were suc...
Polycrystalline Bi2Te3 nanowires are electrochemically grown in ion track-etched polycarbonate membr...
International audienceArrays of thermoelectric bismuth telluride (Bi2Te3) nanowires were grown into ...
Thermoelectric material Bi1-xSbx nanowire arrays have been successfully synthesized by pulsed electr...
Bi2Te3 nanowires with diameters ranging from 25 to 270 nm, ultra-high aspect ratio, and uniform grow...
We report the fabrication of Bi2Te3 nanowires with diameters as small as 15 nm, which is comparable ...
We report the fabrication of Bi2Te3 nanowires with diameters as small as 15 nm, which is comparable ...
Arrays of Bi1-xSbx nanowire with various compositions (0 <= x <= 1) are grown in etched ion-track me...
Arrays of Bi1-xSbx nanowire with various compositions (0 <= x <= 1) are grown in etched ion-track me...
Self-standing Bi2Te3 networks of interconnected nanowires were fabricated in three-dimensional porou...
Bismuth telluride (Bi2Te3) is the thermoelectric reference material at room temperature. Its figure ...
Bismuth telluride (Bi2Te3) is the thermoelectric reference material at room temperature. Its figure ...
We report the room-temperature growth of vertically aligned ternary Bi2−xSbxTe3 nanowires of diamete...
International audienceThermoelectric nanowires have been predicted to have superior properties compa...
Bismuth telluride (Bi2Te3) nanowire arrays with a uniform length and controlled composition were ele...
Multilayer nanowire arrays of a new heterogeneous thermoelectric material, Bi(2)Te(2)Se/Te, were suc...
Polycrystalline Bi2Te3 nanowires are electrochemically grown in ion track-etched polycarbonate membr...