Single crystalline tellurium nanowires were successfully synthesized in large scale by a facile approach of vaporizing tellurium metal and condensing the vapor in an inert atmosphere onto a Si substrate. Tellurium was evaporated by heating at 300 C at 1 torr and condensed on the Si substrate at 100-150 C, in the downstream of argon (Ar) gas at a flow rate of 25 sccm for 30 min. The as-synthesized nanowires have diameters between 100-300 nm and lengths up to several micrometers. The single crystalline nanowires grew in a preferred [0001] direction. The obtained nanowires were highly pure as only tellurium metal was used in the vaporization process, and no other reagent, surfactant, or template were used for the growth. This low temperature a...
Tellurium (Te) nanostructures, including nanowires and branched nanorods, were synthesized by galvan...
Tellurite (TeO32-) is a hazardous and toxic oxyanion for living organisms. However, several microorg...
Uniform trifold tellurium nanostructures have been synthesized through a facile and green solvotherm...
One-dimensional tellurium nanostructures can exhibit distinct electronic properties from those seen ...
Single crystalline nanorods and nanowires of t-Te have been prepared by a simple solution route. The...
Tellurium nanotubes and nanorods were synthesized by physical vapor deposition (PVD) in an induction...
A vapor transport method is employed to synthesize single crystalline tellurium nanowires with tailo...
Single crystalline nanorods and nanowires of t-Te have been prepared by a simple solution route. Th...
Since the experimental discovery of graphene, two dimensional materials have enjoyed more attention ...
The scalable, high-throughput, cost-effective synthesis of high-quality tetragonal tellurium (t-Te) ...
We report the controlled growth of highly ordered and well aligned one-dimensional tellurium nanostr...
International audienceWe report template-free electrodeposition of tellurium (Te) 1D nanostructures ...
Tellurium, a p-type semiconductor with a narrow bandgap of 0.35eV, has a preferential growth in one ...
10.1016/j.matchemphys.2008.07.101Materials Chemistry and Physics1132-3523-526MCHP
Trigonal phase of tellurium (t-Te) nanorods with tapered ends have been synthesized through spontane...
Tellurium (Te) nanostructures, including nanowires and branched nanorods, were synthesized by galvan...
Tellurite (TeO32-) is a hazardous and toxic oxyanion for living organisms. However, several microorg...
Uniform trifold tellurium nanostructures have been synthesized through a facile and green solvotherm...
One-dimensional tellurium nanostructures can exhibit distinct electronic properties from those seen ...
Single crystalline nanorods and nanowires of t-Te have been prepared by a simple solution route. The...
Tellurium nanotubes and nanorods were synthesized by physical vapor deposition (PVD) in an induction...
A vapor transport method is employed to synthesize single crystalline tellurium nanowires with tailo...
Single crystalline nanorods and nanowires of t-Te have been prepared by a simple solution route. Th...
Since the experimental discovery of graphene, two dimensional materials have enjoyed more attention ...
The scalable, high-throughput, cost-effective synthesis of high-quality tetragonal tellurium (t-Te) ...
We report the controlled growth of highly ordered and well aligned one-dimensional tellurium nanostr...
International audienceWe report template-free electrodeposition of tellurium (Te) 1D nanostructures ...
Tellurium, a p-type semiconductor with a narrow bandgap of 0.35eV, has a preferential growth in one ...
10.1016/j.matchemphys.2008.07.101Materials Chemistry and Physics1132-3523-526MCHP
Trigonal phase of tellurium (t-Te) nanorods with tapered ends have been synthesized through spontane...
Tellurium (Te) nanostructures, including nanowires and branched nanorods, were synthesized by galvan...
Tellurite (TeO32-) is a hazardous and toxic oxyanion for living organisms. However, several microorg...
Uniform trifold tellurium nanostructures have been synthesized through a facile and green solvotherm...