Modelling of the thermoelectric power factor in quasi-one-dimensional organic crystals
Thermoelectric power factor is modelled in some quasi-one-dimensional organic crystals as a function of Fermi energy and different crystal parameters at room temperature. Two main electron-phonon interaction mechanisms and scattering of carriers on impurities are taken into account. Values of ther...
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D.Ghitu Institute of Electronic Engineering and Nanotechnologies
2008
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oai:doaj.org-article:f0a6d028b5054b18965d9926367cb4832021-11-21T12:06:40ZModelling of the thermoelectric power factor in quasi-one-dimensional organic crystals 2537-63651810-648Xhttps://doaj.org/article/f0a6d028b5054b18965d9926367cb4832008-07-01T00:00:00Zhttps://mjps.nanotech.md/archive/2008/article/3910https://doaj.org/toc/1810-648Xhttps://doaj.org/toc/2537-6365Thermoelectric power factor is modelled in some quasi-one-dimensional organic crystals as a function of Fermi energy and different crystal parameters at room temperature. Two main electron-phonon interaction mechanisms and scattering of carriers on impurities are taken into account. Values of thermoelectric power factor ~ 500 mW/cmK2 are predicted which are the highest calculated so far in such organic materials of p-type. Casian, AnatolieDashevsky, ZinoviScherrer, HubertBalmuş, IonDuşciac, ViorelD.Ghitu Institute of Electronic Engineering and NanotechnologiesarticlePhysicsQC1-999ElectronicsTK7800-8360ENMoldavian Journal of the Physical Sciences, Vol 7, Iss 3, Pp 328-333 (2008) |
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DOAJ |
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DOAJ |
language |
EN |
topic |
Physics QC1-999 Electronics TK7800-8360 |
spellingShingle |
Physics QC1-999 Electronics TK7800-8360 Casian, Anatolie Dashevsky, Zinovi Scherrer, Hubert Balmuş, Ion Duşciac, Viorel Modelling of the thermoelectric power factor in quasi-one-dimensional organic crystals |
description |
Thermoelectric power factor is modelled in some quasi-one-dimensional organic crystals as a function of Fermi energy and different crystal parameters at room temperature. Two
main electron-phonon interaction mechanisms and scattering of carriers on impurities are
taken into account. Values of thermoelectric power factor ~ 500 mW/cmK2
are predicted
which are the highest calculated so far in such organic materials of p-type. |
format |
article |
author |
Casian, Anatolie Dashevsky, Zinovi Scherrer, Hubert Balmuş, Ion Duşciac, Viorel |
author_facet |
Casian, Anatolie Dashevsky, Zinovi Scherrer, Hubert Balmuş, Ion Duşciac, Viorel |
author_sort |
Casian, Anatolie |
title |
Modelling of the thermoelectric power factor in quasi-one-dimensional organic crystals
|
title_short |
Modelling of the thermoelectric power factor in quasi-one-dimensional organic crystals
|
title_full |
Modelling of the thermoelectric power factor in quasi-one-dimensional organic crystals
|
title_fullStr |
Modelling of the thermoelectric power factor in quasi-one-dimensional organic crystals
|
title_full_unstemmed |
Modelling of the thermoelectric power factor in quasi-one-dimensional organic crystals
|
title_sort |
modelling of the thermoelectric power factor in quasi-one-dimensional organic crystals |
publisher |
D.Ghitu Institute of Electronic Engineering and Nanotechnologies |
publishDate |
2008 |
url |
https://doaj.org/article/f0a6d028b5054b18965d9926367cb483 |
work_keys_str_mv |
AT casiananatolie modellingofthethermoelectricpowerfactorinquasionedimensionalorganiccrystals AT dashevskyzinovi modellingofthethermoelectricpowerfactorinquasionedimensionalorganiccrystals AT scherrerhubert modellingofthethermoelectricpowerfactorinquasionedimensionalorganiccrystals AT balmusion modellingofthethermoelectricpowerfactorinquasionedimensionalorganiccrystals AT dusciacviorel modellingofthethermoelectricpowerfactorinquasionedimensionalorganiccrystals |
_version_ |
1718419280534437888 |