Author:
Ferre Llin Lourdes,Mirando Francesco,Samarelli Antonio,Odia Ameze,Cecchi Stefano,Etzelstorfer Tanja,Müller Gubler Elisabeth,Chrastina Daniel,Isella Giovanni,Stangl Julian,Weaver John M R,Dobson Phil,Paul Douglas J
Abstract
Low dimensional structures such as superlattices have the potential to improve the thermoelectric properties of materials by engineering the scattering of phonons to reduce the thermal conductivity and therefore improve the thermeoelectric performance. Here we demonstrate the reduction in thermal conductivity in Ge/SiGe superlattices using multiple barrier engineering to scatter acoustic phonons at the key wavelengths for thermal transport. The approach allows ZT to be increased in wide quantum well superlattices through the reduction of heterointerfaces which scatter both electrons and phonons.
Publisher
The Electrochemical Society
Cited by
1 articles.
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