Electrical characterization of thermoelectric generators based on p-type Yb0.6Co4Sb12 and n-type Fe2.0Co2.0Sb12 thermoelectric materials

In this study, thermoelectric power generation (TEPG) device (D) was fabricated. The device based on p-Yb0.6Co4Sb12 and n-Fe2.0Co2.0Sb12, fabricated by using the solid state microwave. 8-couples of legs connected and attached to alumina substrates by Ag paste–Cu plate–Ag paste electrodes, with dime...

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Main Authors: Mustafa Kadhim Salman, Arshad Hmood Abd Alkadhim
Format: Article
Language:English
Published: University of Kufa 2019-06-01
Series:Journal of Kufa-Physics
Subjects:
Online Access:https://journal.uokufa.edu.iq/index.php/jkp/article/view/7223
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author Mustafa Kadhim Salman
Arshad Hmood Abd Alkadhim
author_facet Mustafa Kadhim Salman
Arshad Hmood Abd Alkadhim
author_sort Mustafa Kadhim Salman
collection DOAJ
description In this study, thermoelectric power generation (TEPG) device (D) was fabricated. The device based on p-Yb0.6Co4Sb12 and n-Fe2.0Co2.0Sb12, fabricated by using the solid state microwave. 8-couples of legs connected and attached to alumina substrates by Ag paste–Cu plate–Ag paste electrodes, with dimensions of 25 mm by 25 mm were used to fabricate the device. The maximum output power (Pmax) and the open-circuit voltage (Voc) was estimated based on the temperature difference (∆T) of 210 K and the hot-side temperature (TH) of 603 K  for the module. We found the obtained open-circuit voltage (Voc) was 18.046 mV and the maximum output power (Pmax) was 12.732 μW.  
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spelling doaj.art-f9ff795f552447459ed25524aa10c5752024-03-16T01:16:11ZengUniversity of KufaJournal of Kufa-Physics2077-58302312-66712019-06-0111110.31257/2018/JKP/2019/110114Electrical characterization of thermoelectric generators based on p-type Yb0.6Co4Sb12 and n-type Fe2.0Co2.0Sb12 thermoelectric materialsMustafa Kadhim SalmanArshad Hmood Abd Alkadhim In this study, thermoelectric power generation (TEPG) device (D) was fabricated. The device based on p-Yb0.6Co4Sb12 and n-Fe2.0Co2.0Sb12, fabricated by using the solid state microwave. 8-couples of legs connected and attached to alumina substrates by Ag paste–Cu plate–Ag paste electrodes, with dimensions of 25 mm by 25 mm were used to fabricate the device. The maximum output power (Pmax) and the open-circuit voltage (Voc) was estimated based on the temperature difference (∆T) of 210 K and the hot-side temperature (TH) of 603 K  for the module. We found the obtained open-circuit voltage (Voc) was 18.046 mV and the maximum output power (Pmax) was 12.732 μW.   https://journal.uokufa.edu.iq/index.php/jkp/article/view/7223Thermoelectric power generation Direct energy Transformation Thermoelectric materials
spellingShingle Mustafa Kadhim Salman
Arshad Hmood Abd Alkadhim
Electrical characterization of thermoelectric generators based on p-type Yb0.6Co4Sb12 and n-type Fe2.0Co2.0Sb12 thermoelectric materials
Journal of Kufa-Physics
Thermoelectric power
generation
Direct energy Transformation
Thermoelectric materials
title Electrical characterization of thermoelectric generators based on p-type Yb0.6Co4Sb12 and n-type Fe2.0Co2.0Sb12 thermoelectric materials
title_full Electrical characterization of thermoelectric generators based on p-type Yb0.6Co4Sb12 and n-type Fe2.0Co2.0Sb12 thermoelectric materials
title_fullStr Electrical characterization of thermoelectric generators based on p-type Yb0.6Co4Sb12 and n-type Fe2.0Co2.0Sb12 thermoelectric materials
title_full_unstemmed Electrical characterization of thermoelectric generators based on p-type Yb0.6Co4Sb12 and n-type Fe2.0Co2.0Sb12 thermoelectric materials
title_short Electrical characterization of thermoelectric generators based on p-type Yb0.6Co4Sb12 and n-type Fe2.0Co2.0Sb12 thermoelectric materials
title_sort electrical characterization of thermoelectric generators based on p type yb0 6co4sb12 and n type fe2 0co2 0sb12 thermoelectric materials
topic Thermoelectric power
generation
Direct energy Transformation
Thermoelectric materials
url https://journal.uokufa.edu.iq/index.php/jkp/article/view/7223
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AT arshadhmoodabdalkadhim electricalcharacterizationofthermoelectricgeneratorsbasedonptypeyb06co4sb12andntypefe20co20sb12thermoelectricmaterials