Tellurium oxide (TeO(2)) nanowires were synthesized by the thermal evaporation of tellurium metal in an oxygen atmosphere without the presence of any catalysts. The morphology, structure and composition of the prepared nanowires were studied by scanning electron microscopy, X-ray diffraction spectroscopy, micro-Raman scattering and energy-dispersive X-ray spectroscopy. The nanowires were found to have uniform morphology with diameters ranging from 60 to 600nm and lengths up to several micrometers. They exhibit a well-crystalline structure consistent with tetragonal (alpha-phase) TeO(2) crystal. An optical energy band gap of 3.48 eV for direct transition was estimated by UV-vis-NIR spectroscopy. Gas-sensing properties of samples were examine...
ABSTRACT A new nonenzymatic platinum Te oxide nanowires modified electrode (Pt/TeO2-NWs) for amper...
There is a strong interest in thermoelectric materials for energy production and savings. The proper...
We prepared a highly sensitive and selective NO2 sensor, based on the TeO2 branched SnO2 nanowires (...
We have synthesized one-dimensional structures of tellurium dioxide (TeO2) by heating of tellurium p...
Gas sensors play a pivotal role in environmental monitoring, with NO2 sensors standing out due to th...
Nanocrystalline and amorphous tellurium thin films have been prepared and their both DC and AC elect...
The sensing properties of porous TeO2 microtubes were observed from the electrical conductance chang...
Tellurium tubular crystals were grown by direct thermal evaporation of tellurium metal in an inert a...
Tellurium oxide (TeO(2)) thin films were deposited on quartz substrates by sputtering a Te metal tar...
One-dimensional tellurium nanostructures can exhibit distinct electronic properties from those seen ...
In this paper, we study the influence of two key factors, temperature, and humidity, on gas sensors ...
Tellurium, a p-type semiconductor with a narrow bandgap of 0.35eV, has a preferential growth in one ...
Quasi-one-dimensional nanostructures (so-called nanobelts or nanowires) of tin dioxide, obtained by ...
Abstract We presented an attempt to modulate the electrical property of tellurium nanowires (TeNWs) ...
Tin oxide nanowires were successful prepared using thermal evaporation method. The crystal structure...
ABSTRACT A new nonenzymatic platinum Te oxide nanowires modified electrode (Pt/TeO2-NWs) for amper...
There is a strong interest in thermoelectric materials for energy production and savings. The proper...
We prepared a highly sensitive and selective NO2 sensor, based on the TeO2 branched SnO2 nanowires (...
We have synthesized one-dimensional structures of tellurium dioxide (TeO2) by heating of tellurium p...
Gas sensors play a pivotal role in environmental monitoring, with NO2 sensors standing out due to th...
Nanocrystalline and amorphous tellurium thin films have been prepared and their both DC and AC elect...
The sensing properties of porous TeO2 microtubes were observed from the electrical conductance chang...
Tellurium tubular crystals were grown by direct thermal evaporation of tellurium metal in an inert a...
Tellurium oxide (TeO(2)) thin films were deposited on quartz substrates by sputtering a Te metal tar...
One-dimensional tellurium nanostructures can exhibit distinct electronic properties from those seen ...
In this paper, we study the influence of two key factors, temperature, and humidity, on gas sensors ...
Tellurium, a p-type semiconductor with a narrow bandgap of 0.35eV, has a preferential growth in one ...
Quasi-one-dimensional nanostructures (so-called nanobelts or nanowires) of tin dioxide, obtained by ...
Abstract We presented an attempt to modulate the electrical property of tellurium nanowires (TeNWs) ...
Tin oxide nanowires were successful prepared using thermal evaporation method. The crystal structure...
ABSTRACT A new nonenzymatic platinum Te oxide nanowires modified electrode (Pt/TeO2-NWs) for amper...
There is a strong interest in thermoelectric materials for energy production and savings. The proper...
We prepared a highly sensitive and selective NO2 sensor, based on the TeO2 branched SnO2 nanowires (...