Using molecular dynamics simulations, we investigate the thermal conductivity and local heat flux distribution of Bi2Te3 nanowires. It is found that at room temperature, the converged length-independent thermal conductivity of Bi2Te3 nanowires is only 0.89 W/m K, which is about 2-fold lower than their bulk counterpart. Interestingly, the local heat flux density along the quintet boundary layer is only about 18% of that along the central layers due to different phonon edge scattering intensities. Our work demonstrates that topological insulator nanostructures are promising candidates for the development of high-performance thermoelectric devices for applications in nanoscale energy generation and temperature management. (C) 2014 AIP Publishi...
Comunicación presentada en la 34th Annual International Conference on Thermoelectrics (ICT) y en la ...
Two-body interatomic potentials in the Morse potential form have been developed for bismuth tellurid...
Izadi S, Han JW, Salloum S, et al. Interface-Dominated Topological Transport in Nanograined Bulk Bi2...
Atomic level thermal transport in layered materials, namely, Bi 2Te3 and graphene is investigated us...
Using molecular dynamics simulations, we have predicted the thermal conductivity of Bi2Te3 nanowires...
Póster presentado en la 12th European Conference on Thermoelectricity (ECT2014), celebrada en Madrid...
International audienceEvidence for an excellent compromise between structural stability and low ther...
There is currently substantial effort being invested into creating efficient thermoelectric (TE) nan...
4 páginas, 6 figuras.-- Este documento aparece en la "Twenty-first International Conference on Therm...
Decoupling the electronic thermal and electrical conductivities is one of the limitations hindering ...
Bi2Te3 is well-known for its utility in thermoelectrical applications and more recently as topologic...
textThis dissertation presents thermal and thermoelectric transport measurements of onedimensional ...
Decoupling the electronic thermal and electrical conductivities is one of the limitations hindering ...
Izadi S. Thermoelectric and electrical transport properties of Bi2Te3 compacted nanoparticles bulk m...
Comunicación presentada en la 11th European Conference on Thermoelectrics (ECT2013), celebrada en No...
Comunicación presentada en la 34th Annual International Conference on Thermoelectrics (ICT) y en la ...
Two-body interatomic potentials in the Morse potential form have been developed for bismuth tellurid...
Izadi S, Han JW, Salloum S, et al. Interface-Dominated Topological Transport in Nanograined Bulk Bi2...
Atomic level thermal transport in layered materials, namely, Bi 2Te3 and graphene is investigated us...
Using molecular dynamics simulations, we have predicted the thermal conductivity of Bi2Te3 nanowires...
Póster presentado en la 12th European Conference on Thermoelectricity (ECT2014), celebrada en Madrid...
International audienceEvidence for an excellent compromise between structural stability and low ther...
There is currently substantial effort being invested into creating efficient thermoelectric (TE) nan...
4 páginas, 6 figuras.-- Este documento aparece en la "Twenty-first International Conference on Therm...
Decoupling the electronic thermal and electrical conductivities is one of the limitations hindering ...
Bi2Te3 is well-known for its utility in thermoelectrical applications and more recently as topologic...
textThis dissertation presents thermal and thermoelectric transport measurements of onedimensional ...
Decoupling the electronic thermal and electrical conductivities is one of the limitations hindering ...
Izadi S. Thermoelectric and electrical transport properties of Bi2Te3 compacted nanoparticles bulk m...
Comunicación presentada en la 11th European Conference on Thermoelectrics (ECT2013), celebrada en No...
Comunicación presentada en la 34th Annual International Conference on Thermoelectrics (ICT) y en la ...
Two-body interatomic potentials in the Morse potential form have been developed for bismuth tellurid...
Izadi S, Han JW, Salloum S, et al. Interface-Dominated Topological Transport in Nanograined Bulk Bi2...