Polycrystalline Bi2Te3 nanowires are electrochemically grown in ion track-etched polycarbonate membranes. Potentiostatic growth is demonstrated in templates of various thicknesses ranging from 10 to 100 µm. The smallest observed nanowire diameters are 20 nm in thin membranes and approx. 140 -180 nm in thicker membranes. The influence of the various deposition parameters on the nanowire growth rate is presented. Slower growth rates are attained by selective change of deposition potentials and lower temperatures. Nanowires synthesized at slower growth rates have shown to possess a higher degree of crystalline order and smoother surface contours. With respect to structural properties, X-ray diffraction and transmission electron microscopy veri...
We report the room-temperature growth of vertically aligned ternary Bi$_{2-x}$Sb$_x$Te$_3$ nanowires...
Bismuth chalcogenides are the best thermoelectric materials at room temperature. Nanostructuring is ...
International audienceIn this study, we examined individual bismuth telluride nanowires (NWs) electr...
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 ...
We report the electrochemical growth of high density arrays of n- type Bi2Te3 and p-type Bi0.5Sb1.5T...
Promising research fields associated to solid state physics, such as thermoelectrics and spintronics,...
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 ...
International audienceArrays of thermoelectric bismuth telluride (Bi2Te3) nanowires were grown into ...
Le tellurure de bismuth (Bi2Te3) est le matériau thermoélectrique de référence à température ambiant...
Bi2Te3 nanowires with diameters ranging from 25 to 270 nm, ultra-high aspect ratio, and uniform grow...
Thermoelectric material Bi2Te3 nanowire arrays have been successfully prepared by pulsed electrochem...
Arrays of nanowires and nanotubes of bismuth-tellurium (Bi-Te) were fabricated by electrodeposition ...
High density p-type Bi0.5Sb1.5Te3 nanowire arrays are produced by a combination of electrodeposition...
We report the room-temperature growth of vertically aligned ternary Bi$_{2-x}$Sb$_x$Te$_3$ nanowires...
Bismuth chalcogenides are the best thermoelectric materials at room temperature. Nanostructuring is ...
International audienceIn this study, we examined individual bismuth telluride nanowires (NWs) electr...
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 ...
We report the electrochemical growth of high density arrays of n- type Bi2Te3 and p-type Bi0.5Sb1.5T...
Promising research fields associated to solid state physics, such as thermoelectrics and spintronics,...
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 ...
International audienceArrays of thermoelectric bismuth telluride (Bi2Te3) nanowires were grown into ...
Le tellurure de bismuth (Bi2Te3) est le matériau thermoélectrique de référence à température ambiant...
Bi2Te3 nanowires with diameters ranging from 25 to 270 nm, ultra-high aspect ratio, and uniform grow...
Thermoelectric material Bi2Te3 nanowire arrays have been successfully prepared by pulsed electrochem...
Arrays of nanowires and nanotubes of bismuth-tellurium (Bi-Te) were fabricated by electrodeposition ...
High density p-type Bi0.5Sb1.5Te3 nanowire arrays are produced by a combination of electrodeposition...
We report the room-temperature growth of vertically aligned ternary Bi$_{2-x}$Sb$_x$Te$_3$ nanowires...
Bismuth chalcogenides are the best thermoelectric materials at room temperature. Nanostructuring is ...
International audienceIn this study, we examined individual bismuth telluride nanowires (NWs) electr...