| Literature DB >> 27494488 |
Jiangang He1, Maximilian Amsler1, Yi Xia2, S Shahab Naghavi1, Vinay I Hegde1, Shiqiang Hao1, Stefan Goedecker3, Vidvuds Ozoliņš2, Chris Wolverton1.
Abstract
Semiconducting half and, to a lesser extent, full Heusler compounds are promising thermoelectric materials due to their compelling electronic properties with large power factors. However, intrinsically high thermal conductivity resulting in a limited thermoelectric efficiency has so far impeded their widespread use in practical applications. Here, we report the computational discovery of a class of hitherto unknown stable semiconducting full Heusler compounds with ten valence electrons (X_{2}YZ, X=Ca, Sr, and Ba; Y=Au and Hg; Z=Sn, Pb, As, Sb, and Bi) through high-throughput ab initio screening. These new compounds exhibit ultralow lattice thermal conductivity κ_{L} close to the theoretical minimum due to strong anharmonic rattling of the heavy noble metals, while preserving high power factors, thus resulting in excellent phonon-glass electron-crystal materials.Entities:
Year: 2016 PMID: 27494488 DOI: 10.1103/PhysRevLett.117.046602
Source DB: PubMed Journal: Phys Rev Lett ISSN: 0031-9007 Impact factor: 9.161