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- W2883538218 abstract "This review briefly discusses the relationship between the crystal structures, electronic structures, and thermoelectric properties of materials such as pseudogap quasicrystals and related approximant crystals, narrow-gap binary intermetallic compounds, and lead chalcogenides. The approach used is to identify the materials’ intrinsic physical properties from experimental data and establish a route for tuning their properties based on theoretical models and first-principles calculations. A possible route for improving thermoelectric performance is to use a band engineering approach, such as band convergence and introducing impurity states near the valence and conduction band edges. This approach was successfully applied to TiSi2-type RuGa2 and the lead chalcogenides PbTe and PbSe." @default.
- W2883538218 created "2018-08-03" @default.
- W2883538218 creator A5091898807 @default.
- W2883538218 date "2018-09-01" @default.
- W2883538218 modified "2023-09-26" @default.
- W2883538218 title "Improvement of the Thermoelectric Performance of Pseudogap and Narrow-Gap Compounds via Theoretical Calculations" @default.
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- W2883538218 doi "https://doi.org/10.2320/matertrans.e-m2018829" @default.
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