By using a combination of the first-principles density functional theory and nonequilibrium Green's function for electron and phonon transport, we investigate the thermoelectric properties of silicon-germanium superlattice nanowires (NWs). Our results show that introducing superlattice structures always increases thermoelectric figure of merit, ZT, which depends on the periodic length of the superlattice NWs. For n-type superlattice NWs, the achievable maximum ZT is 4.7, which is 5-fold increase as compared to the equivalent pristine silicon NWs. For p-type wires, the achieved maximum ZT is 2.74, which is 4.6-fold increase as compared to the pristine silicon NWs. (C) 2012 American Institute of Physics. [http://dx.doi.org/10.1063/1.4769...
Thermoelectric materials could play an increasing role for the efficient use of energy resources and...
The strongly correlated thermoelectric properties have been a major hurdle for high-performance ther...
We computed thermoelectric properties of nanoporous Ge (np-Ge) with aligned pores along the [001] di...
We calculate the thermoelectric figure of merit, zT=S2GT/(κl+κe), for p-type Si nanowires with axial...
By using first-principles electronic structure calculation and Boltzmann transport equation, we inve...
ABSTRACT: The engineering of nanostructured materials with very low thermal conductivity is a necess...
Abstract It is widely accepted that low dimensionality of semiconductor heterostructures and nanostr...
The possibility to reduce the thermal conductivity leaving essentially unaltered the electron trans...
The possibility to reduce the thermal conductivity leaving essentially unaltered the electron trans...
The thermoelectric properties in one- and two-dimensional silicon and germanium structures have been...
116 p.Recently, nanostructured materials have received tremendous attention because of their excepti...
The possibility to reduce the thermal conductivity leaving essentially unaltered the electron transp...
In this study, we have investigated the electronic and dynamical properties of several semiconductor...
The increasing demand for fossil fuels, and the need to reduce greenhouse gases, requires ‘clean’ en...
Dimensional scaling provides an alternative route to improve the thermoelectric figure of merit (ZT)...
Thermoelectric materials could play an increasing role for the efficient use of energy resources and...
The strongly correlated thermoelectric properties have been a major hurdle for high-performance ther...
We computed thermoelectric properties of nanoporous Ge (np-Ge) with aligned pores along the [001] di...
We calculate the thermoelectric figure of merit, zT=S2GT/(κl+κe), for p-type Si nanowires with axial...
By using first-principles electronic structure calculation and Boltzmann transport equation, we inve...
ABSTRACT: The engineering of nanostructured materials with very low thermal conductivity is a necess...
Abstract It is widely accepted that low dimensionality of semiconductor heterostructures and nanostr...
The possibility to reduce the thermal conductivity leaving essentially unaltered the electron trans...
The possibility to reduce the thermal conductivity leaving essentially unaltered the electron trans...
The thermoelectric properties in one- and two-dimensional silicon and germanium structures have been...
116 p.Recently, nanostructured materials have received tremendous attention because of their excepti...
The possibility to reduce the thermal conductivity leaving essentially unaltered the electron transp...
In this study, we have investigated the electronic and dynamical properties of several semiconductor...
The increasing demand for fossil fuels, and the need to reduce greenhouse gases, requires ‘clean’ en...
Dimensional scaling provides an alternative route to improve the thermoelectric figure of merit (ZT)...
Thermoelectric materials could play an increasing role for the efficient use of energy resources and...
The strongly correlated thermoelectric properties have been a major hurdle for high-performance ther...
We computed thermoelectric properties of nanoporous Ge (np-Ge) with aligned pores along the [001] di...