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Integrated computational materials discovery of silver doped tin sulfide as a thermoelectric material
- Source :
- Phys. Chem. Chem. Phys.. 16:19894-19899
- Publication Year :
- 2014
- Publisher :
- Royal Society of Chemistry (RSC), 2014.
-
Abstract
- Accelerating the discovery of new materials is crucial for realizing the vision of need-driven materials development. In the present study we employ an integrated computational and experimental approach to search for new thermoelectric materials. High-throughput first principles calculations of thermoelectric transport coefficients are used to screen sulfide compounds conforming to the boundary conditions of abundant and innocuous components. A further computational screening step of substitutional defects is introduced, whereby SnS doped with monovalent cations is identified as having favorable transport properties. By silver doping of SnS under S-rich conditions an electric conductivity more than an order of magnitude higher than reported previously is realized. The obtained thermoelectric power-factor at room temperature is comparable to the state of the art for thermoelectric materials based on earth abundant, non-toxic elements. The high-throughput screening of extrinsic defects solves a long standing bottleneck in search of new thermoelectric materials. We show how the intrinsic carrier concentration in the low-temperature phase of SnSe is two orders of magnitude higher than in SnS. We furthermore find that the carrier concentration in SnSe can still be further optimized by silver doping.
- Subjects :
- chemistry.chemical_classification
Materials science
Sulfide
business.industry
Doping
General Physics and Astronomy
Nanotechnology
Thermoelectric materials
chemistry
Electrical resistivity and conductivity
Phase (matter)
Thermoelectric effect
Optoelectronics
Boundary value problem
Physical and Theoretical Chemistry
business
Order of magnitude
Subjects
Details
- ISSN :
- 14639084 and 14639076
- Volume :
- 16
- Database :
- OpenAIRE
- Journal :
- Phys. Chem. Chem. Phys.
- Accession number :
- edsair.doi.dedup.....aeb3af8c8b0601f036118edc676b3cf9
- Full Text :
- https://doi.org/10.1039/c4cp02871f