2018
DOI: 10.1021/acsami.8b15080
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Thermoelectric Transport Properties of CdxBiyGe1–xyTe Alloys

Abstract: Band convergence has been proven as an effective approach for enhancing thermoelectric performance, particularly in p-type IV–VI semiconductors, where the superior electronic performance originates from the contributions of both L and Σ band valleys when they converge to have a small energy offset. When alloying with cubic IV–VI semiconductors, CdTe has been found as an effective agent for achieving such a band convergence. This work focuses on the effect of CdTe-alloying on the thermoelectric transport proper… Show more

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Cited by 61 publications
(63 citation statements)
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References 66 publications
(127 reference statements)
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“…The surface structure of the PI aerogel was smooth and flat, which may lead to decrease of contact angle. 33 Nevertheless, the surface structure of the F-PI aerogel was destroyed, the inside porous structure of the F-PI aerogel was partially preserved [ Figure S15(d)]. These results also confirmed that even the F-PI aerogel was presented in a depth of ca.…”
Section: Synthesis and Characterizationsupporting
confidence: 59%
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“…The surface structure of the PI aerogel was smooth and flat, which may lead to decrease of contact angle. 33 Nevertheless, the surface structure of the F-PI aerogel was destroyed, the inside porous structure of the F-PI aerogel was partially preserved [ Figure S15(d)]. These results also confirmed that even the F-PI aerogel was presented in a depth of ca.…”
Section: Synthesis and Characterizationsupporting
confidence: 59%
“…In addition, the F-PI aerogels exhibited self-cleaning performance similar to the lotus effect. 33 As shown in the Supporting Information of Figure S3, the dust on the aerogel surfaces could be easily washed away by water.…”
Section: Synthesis and Characterizationmentioning
confidence: 99%
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“…[27,28] Also, those with further suitable band-edge positions are highly expected for sunlight-driven water-splitting as efficient photocatalyst [29][30][31] due to their high surface ratio. Binary alloys of group IV-V elements (AB, A═Si, Ge and B═P, As) adopting layered structures [32][33][34] provide us another family of 2D materials. Based on the well-known top-to-down synthesizing strategy, few-layered group IV-V compounds have been experimentally realized.…”
mentioning
confidence: 99%