We herein report a gas-solid transformation mechanism for the surfactant-free synthesis of Te NWs at room temperature by electrolysis of bulk Bi2Te3 using H2Te gas. Te NWs, with an average diameter below 20 nm, grow along the [001] direction due to the unique spiral chains in the crystal structure and show an enhanced Raman scattering effect, a broad absorption band over the range of 350-750 nm and an emission band over the range of 400-700 nm in the photoluminescence spectrum. In terms of device applications, we demonstrate how Te NWs can be directly applied as a p-type dopant source in order to shift the Dirac point in ambipolar field effect graphene transistors. Finally, the favorable capacitive properties of Te NWs are established as su...
Parmi les matériaux thermoélectriques, le tellure possède un coefficient Seebeck positif élevé (500 ...
Currently, metal oxides and chalcogenide nanostructures are the most visible energy sources. Numerou...
Tellurium (Te), the most metallic semiconductor, has been widely explored in recent decades owing to...
One-dimensional tellurium nanostructures can exhibit distinct electronic properties from those seen ...
We present a design principle to develop new categories of telluride-based thermoelectric nanowire h...
High-mobility van der Waals ambipolar semiconductors are promising in logic and reconfigurable circu...
Abstract We presented an attempt to modulate the electrical property of tellurium nanowires (TeNWs) ...
The scalable, high-throughput, cost-effective synthesis of high-quality tetragonal tellurium (t-Te) ...
As one feasible alternative to platinum (Pt) catalyst in dye-sensitized solar cells (DSSCs), metallo...
Tellurium, a p-type semiconductor with a narrow bandgap of 0.35eV, has a preferential growth in one ...
Low-dimensional nanomaterials have attracted considerable attention for next-generation flexible ene...
Tellurium (Te) nanostructures, including nanowires and branched nanorods, were synthesized by galvan...
We report the synthesis of cobalt-iron (Co-Fe) decorated tellurium nanotubes (Te NTs) using semicond...
Bismuth telluride (Bi2Te3) and its alloys are the best bulk thermoelectric materials known today. Th...
A simple nanomaterial-based reduction strategy that can form leaf-like graphenic structures from gra...
Parmi les matériaux thermoélectriques, le tellure possède un coefficient Seebeck positif élevé (500 ...
Currently, metal oxides and chalcogenide nanostructures are the most visible energy sources. Numerou...
Tellurium (Te), the most metallic semiconductor, has been widely explored in recent decades owing to...
One-dimensional tellurium nanostructures can exhibit distinct electronic properties from those seen ...
We present a design principle to develop new categories of telluride-based thermoelectric nanowire h...
High-mobility van der Waals ambipolar semiconductors are promising in logic and reconfigurable circu...
Abstract We presented an attempt to modulate the electrical property of tellurium nanowires (TeNWs) ...
The scalable, high-throughput, cost-effective synthesis of high-quality tetragonal tellurium (t-Te) ...
As one feasible alternative to platinum (Pt) catalyst in dye-sensitized solar cells (DSSCs), metallo...
Tellurium, a p-type semiconductor with a narrow bandgap of 0.35eV, has a preferential growth in one ...
Low-dimensional nanomaterials have attracted considerable attention for next-generation flexible ene...
Tellurium (Te) nanostructures, including nanowires and branched nanorods, were synthesized by galvan...
We report the synthesis of cobalt-iron (Co-Fe) decorated tellurium nanotubes (Te NTs) using semicond...
Bismuth telluride (Bi2Te3) and its alloys are the best bulk thermoelectric materials known today. Th...
A simple nanomaterial-based reduction strategy that can form leaf-like graphenic structures from gra...
Parmi les matériaux thermoélectriques, le tellure possède un coefficient Seebeck positif élevé (500 ...
Currently, metal oxides and chalcogenide nanostructures are the most visible energy sources. Numerou...
Tellurium (Te), the most metallic semiconductor, has been widely explored in recent decades owing to...