Black phosphorus (BP) is a layered semiconductor with a high mobility of up to similar to 1000 cm(2) V(-1)s(-1) and a narrow bandgap of similar to 0.3 eV, and shows potential applications in thermoelectrics. In stark contrast to most other layered materials, electrical and thermoelectric properties in the basal plane of BP are highly anisotropic. To elucidate the mechanism for such anisotropy, we fabricated BP nanoribbons (similar to 100 nm thick) along the armchair and zigzag directions, and measured the transport properties. It is found that both the electrical conductivity and Seebeck coefficient increase with temperature, a behavior contradictory to that of traditional semiconductors. The three-dimensional variable range hopping model i...
Thermoelectric devices that utilize the Seebeck effect convert heat flow into electrical energy and ...
The electric field effect is a useful means of elucidating intrinsic material properties as well as ...
Black phosphorus (BP) allotrope has an orthorhombic crystal structure with a narrow bandgap of 0.35 ...
Black phosphorus (BP) is a layered semiconductor with a high mobility of up to ∼1000 cm2 V-1s-1 and ...
Black phosphorus attracts enormous attention as a promising layered material for electronic, optoele...
Black phosphorus attracts enormous attention as a promising layered material for electronic, optoele...
The anisotropy of thermal transport properties for bulk black phosphorus (BP) single crystal, which ...
abstract: Black phosphorus attracts enormous attention as a promising layered material for electroni...
Phosphorene, a two-dimensional material exfoliated from black phosphorus (BP), is a promising p-type...
Proceeding the current interest in layered structure for electronic and optoelectronic applications,...
One key challenge in developing postsilicon electronic technology is to find ultrathin channel mater...
Metal-semiconductor contact has been the performance limiting problem for electronic devices and als...
The multilayer band structure of black phosphorus (BP) is highly anisotropic, and its bandgap is tun...
Since the discovery of graphene, two-dimensional (2D) van der Waals materials research has flourishe...
Black Phosphorus (BP) is presently attracting immense research interest on the global level due to i...
Thermoelectric devices that utilize the Seebeck effect convert heat flow into electrical energy and ...
The electric field effect is a useful means of elucidating intrinsic material properties as well as ...
Black phosphorus (BP) allotrope has an orthorhombic crystal structure with a narrow bandgap of 0.35 ...
Black phosphorus (BP) is a layered semiconductor with a high mobility of up to ∼1000 cm2 V-1s-1 and ...
Black phosphorus attracts enormous attention as a promising layered material for electronic, optoele...
Black phosphorus attracts enormous attention as a promising layered material for electronic, optoele...
The anisotropy of thermal transport properties for bulk black phosphorus (BP) single crystal, which ...
abstract: Black phosphorus attracts enormous attention as a promising layered material for electroni...
Phosphorene, a two-dimensional material exfoliated from black phosphorus (BP), is a promising p-type...
Proceeding the current interest in layered structure for electronic and optoelectronic applications,...
One key challenge in developing postsilicon electronic technology is to find ultrathin channel mater...
Metal-semiconductor contact has been the performance limiting problem for electronic devices and als...
The multilayer band structure of black phosphorus (BP) is highly anisotropic, and its bandgap is tun...
Since the discovery of graphene, two-dimensional (2D) van der Waals materials research has flourishe...
Black Phosphorus (BP) is presently attracting immense research interest on the global level due to i...
Thermoelectric devices that utilize the Seebeck effect convert heat flow into electrical energy and ...
The electric field effect is a useful means of elucidating intrinsic material properties as well as ...
Black phosphorus (BP) allotrope has an orthorhombic crystal structure with a narrow bandgap of 0.35 ...