Thermoelectric response of ZrNiSn and ZrNiPb Half-Heuslers: Applicability of semi-classical Boltzmann transport theory

We investigated the thermoelectric transport mechanism of ZrNiSn and ZrNiPb Half-Heuslers within the Boltzmann transport theory, under constant relaxation time approximation. The prediction of band structure behavior along the high symmetry Brillouin zone and density of states are used to establish...

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Main Authors: Saleem Yousuf, Dinesh C. Gupta
Format: Article
Language:English
Published: Elsevier 2019-03-01
Series:Results in Physics
Online Access:http://www.sciencedirect.com/science/article/pii/S2211379718326895
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spelling doaj-5dbfb01913b7478f8ea40fadd66ced122020-11-24T22:07:35ZengElsevierResults in Physics2211-37972019-03-011213821386Thermoelectric response of ZrNiSn and ZrNiPb Half-Heuslers: Applicability of semi-classical Boltzmann transport theorySaleem Yousuf0Dinesh C. Gupta1Corresponding authors.; Condensed Matter Theory Group, School of Studies in Physics, Jiwaji University, Gwalior, IndiaCorresponding authors.; Condensed Matter Theory Group, School of Studies in Physics, Jiwaji University, Gwalior, IndiaWe investigated the thermoelectric transport mechanism of ZrNiSn and ZrNiPb Half-Heuslers within the Boltzmann transport theory, under constant relaxation time approximation. The prediction of band structure behavior along the high symmetry Brillouin zone and density of states are used to establish relations among various transport coefficients like Seebeck coefficient, electrical conductivity, thermal conductivity and power factor which have been found to be in good agreement with the experimental results. The Seebeck coefficient variation show the n-type behavior of heat carriers. The electrical and thermal conductivity show a semiconducting nature of bands along the Fermi level. The lattice part of thermal conductivity show an exponential decreasing trend along the high temperatures. Power factor variation and figure of merit show the heavier element doping of ZrNiSn results in descent increase in efficiency triggering its applicability. The overall measurements show that semi classical Boltzmann transport theory has well behaved potential in predicting the transport properties of the compounds. Keywords: Boltzmann transport theory, Thermoelectrics, Heusler alloys, Band structurehttp://www.sciencedirect.com/science/article/pii/S2211379718326895
collection DOAJ
language English
format Article
sources DOAJ
author Saleem Yousuf
Dinesh C. Gupta
spellingShingle Saleem Yousuf
Dinesh C. Gupta
Thermoelectric response of ZrNiSn and ZrNiPb Half-Heuslers: Applicability of semi-classical Boltzmann transport theory
Results in Physics
author_facet Saleem Yousuf
Dinesh C. Gupta
author_sort Saleem Yousuf
title Thermoelectric response of ZrNiSn and ZrNiPb Half-Heuslers: Applicability of semi-classical Boltzmann transport theory
title_short Thermoelectric response of ZrNiSn and ZrNiPb Half-Heuslers: Applicability of semi-classical Boltzmann transport theory
title_full Thermoelectric response of ZrNiSn and ZrNiPb Half-Heuslers: Applicability of semi-classical Boltzmann transport theory
title_fullStr Thermoelectric response of ZrNiSn and ZrNiPb Half-Heuslers: Applicability of semi-classical Boltzmann transport theory
title_full_unstemmed Thermoelectric response of ZrNiSn and ZrNiPb Half-Heuslers: Applicability of semi-classical Boltzmann transport theory
title_sort thermoelectric response of zrnisn and zrnipb half-heuslers: applicability of semi-classical boltzmann transport theory
publisher Elsevier
series Results in Physics
issn 2211-3797
publishDate 2019-03-01
description We investigated the thermoelectric transport mechanism of ZrNiSn and ZrNiPb Half-Heuslers within the Boltzmann transport theory, under constant relaxation time approximation. The prediction of band structure behavior along the high symmetry Brillouin zone and density of states are used to establish relations among various transport coefficients like Seebeck coefficient, electrical conductivity, thermal conductivity and power factor which have been found to be in good agreement with the experimental results. The Seebeck coefficient variation show the n-type behavior of heat carriers. The electrical and thermal conductivity show a semiconducting nature of bands along the Fermi level. The lattice part of thermal conductivity show an exponential decreasing trend along the high temperatures. Power factor variation and figure of merit show the heavier element doping of ZrNiSn results in descent increase in efficiency triggering its applicability. The overall measurements show that semi classical Boltzmann transport theory has well behaved potential in predicting the transport properties of the compounds. Keywords: Boltzmann transport theory, Thermoelectrics, Heusler alloys, Band structure
url http://www.sciencedirect.com/science/article/pii/S2211379718326895
work_keys_str_mv AT saleemyousuf thermoelectricresponseofzrnisnandzrnipbhalfheuslersapplicabilityofsemiclassicalboltzmanntransporttheory
AT dineshcgupta thermoelectricresponseofzrnisnandzrnipbhalfheuslersapplicabilityofsemiclassicalboltzmanntransporttheory
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