Microstructure and thermoelectric properties of Bi<inf>2</inf>Te<inf>3</inf>nanoplates prepared by sol-gel method

© 2018, Chiang Mai University. All rights reserved. Bi-Te binary compounds are considered the best room temperature thermoelectric materials for cooling and power generation applications because of their high ZT value at room temperature. This research synthesized Bi2Te3nanostructured thermoelectric...

Full description

Saved in:
Bibliographic Details
Main Authors: Suparat Tongpeng, Thapanee Sarakonsri, Braree Chayasombat, Chris Boothroyd, Chanchana Thanachayanont
Format: Journal
Published: 2018
Subjects:
Online Access:https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85040912587&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/58347
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Chiang Mai University
id th-cmuir.6653943832-58347
record_format dspace
spelling th-cmuir.6653943832-583472018-09-05T04:39:53Z Microstructure and thermoelectric properties of Bi<inf>2</inf>Te<inf>3</inf>nanoplates prepared by sol-gel method Suparat Tongpeng Thapanee Sarakonsri Braree Chayasombat Chris Boothroyd Chanchana Thanachayanont Biochemistry, Genetics and Molecular Biology Chemistry Materials Science Mathematics Physics and Astronomy © 2018, Chiang Mai University. All rights reserved. Bi-Te binary compounds are considered the best room temperature thermoelectric materials for cooling and power generation applications because of their high ZT value at room temperature. This research synthesized Bi2Te3nanostructured thermoelectric materials by sol-gel method, using bismuth (lll) acetate and tellurium dioxide as precursors. The Bi2Te3gel was maintained at 500 °C for 2 hours under nitrogen atmosphere to form powder. A defect free crystalline structure of Bi2Te3was observed in XRD pattern. Homogeneous nanoplates and rods with vertical nanoplates were discovered by SEM and TEM techniques. HRTEM image confirmed the lattice space of Bi2Te3phase. Although nanostructures consisting of Bi2Te3nanoplates on Te nanotubes have been reported, this is the first time homogenous Bi2Te3nanoplates have been reported to form on a Bi2Te3core rod structure. Moreover, these homogenous Bi2Te3nanostructures can be prepared by a simple sol-gel process. Finally, a maximum power factor of 4.18 μW/cmK2was obtained at 473 K for the bulk Bi2Te3, calculated from Seebeck coefficient and electrical conductivity. 2018-09-05T04:23:00Z 2018-09-05T04:23:00Z 2018-01-01 Journal 01252526 2-s2.0-85040912587 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85040912587&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/58347
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Biochemistry, Genetics and Molecular Biology
Chemistry
Materials Science
Mathematics
Physics and Astronomy
spellingShingle Biochemistry, Genetics and Molecular Biology
Chemistry
Materials Science
Mathematics
Physics and Astronomy
Suparat Tongpeng
Thapanee Sarakonsri
Braree Chayasombat
Chris Boothroyd
Chanchana Thanachayanont
Microstructure and thermoelectric properties of Bi<inf>2</inf>Te<inf>3</inf>nanoplates prepared by sol-gel method
description © 2018, Chiang Mai University. All rights reserved. Bi-Te binary compounds are considered the best room temperature thermoelectric materials for cooling and power generation applications because of their high ZT value at room temperature. This research synthesized Bi2Te3nanostructured thermoelectric materials by sol-gel method, using bismuth (lll) acetate and tellurium dioxide as precursors. The Bi2Te3gel was maintained at 500 °C for 2 hours under nitrogen atmosphere to form powder. A defect free crystalline structure of Bi2Te3was observed in XRD pattern. Homogeneous nanoplates and rods with vertical nanoplates were discovered by SEM and TEM techniques. HRTEM image confirmed the lattice space of Bi2Te3phase. Although nanostructures consisting of Bi2Te3nanoplates on Te nanotubes have been reported, this is the first time homogenous Bi2Te3nanoplates have been reported to form on a Bi2Te3core rod structure. Moreover, these homogenous Bi2Te3nanostructures can be prepared by a simple sol-gel process. Finally, a maximum power factor of 4.18 μW/cmK2was obtained at 473 K for the bulk Bi2Te3, calculated from Seebeck coefficient and electrical conductivity.
format Journal
author Suparat Tongpeng
Thapanee Sarakonsri
Braree Chayasombat
Chris Boothroyd
Chanchana Thanachayanont
author_facet Suparat Tongpeng
Thapanee Sarakonsri
Braree Chayasombat
Chris Boothroyd
Chanchana Thanachayanont
author_sort Suparat Tongpeng
title Microstructure and thermoelectric properties of Bi<inf>2</inf>Te<inf>3</inf>nanoplates prepared by sol-gel method
title_short Microstructure and thermoelectric properties of Bi<inf>2</inf>Te<inf>3</inf>nanoplates prepared by sol-gel method
title_full Microstructure and thermoelectric properties of Bi<inf>2</inf>Te<inf>3</inf>nanoplates prepared by sol-gel method
title_fullStr Microstructure and thermoelectric properties of Bi<inf>2</inf>Te<inf>3</inf>nanoplates prepared by sol-gel method
title_full_unstemmed Microstructure and thermoelectric properties of Bi<inf>2</inf>Te<inf>3</inf>nanoplates prepared by sol-gel method
title_sort microstructure and thermoelectric properties of bi<inf>2</inf>te<inf>3</inf>nanoplates prepared by sol-gel method
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85040912587&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/58347
_version_ 1681425048403968000