Cargando…

Study on the Targeted Improvement Mechanism of the Carrier Concentration and Mobility of BiCuSeO Ceramics

BiCuSeO has great application prospects in thermoelectric power generation and thermoelectric catalysis, but it is limited by its lower thermoelectric performance. Herein, BiCuSeO bulk materials were prepared using a solid-phase reaction method and a ball-milling method combined with spark plasma si...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Zhibin, Zhao, Hong, Luo, Xinyu, Han, Wenyuan, Wang, Hao, Meng, Linghao, She, Xinqi, Quan, Anlong, Peng, Yixin, Cai, Guoji, Liu, Yi, Tang, Yong, Feng, Bo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10538208/
https://www.ncbi.nlm.nih.gov/pubmed/37763920
http://dx.doi.org/10.3390/mi14091757
_version_ 1785113274037043200
author Wang, Zhibin
Zhao, Hong
Luo, Xinyu
Han, Wenyuan
Wang, Hao
Meng, Linghao
She, Xinqi
Quan, Anlong
Peng, Yixin
Cai, Guoji
Liu, Yi
Tang, Yong
Feng, Bo
author_facet Wang, Zhibin
Zhao, Hong
Luo, Xinyu
Han, Wenyuan
Wang, Hao
Meng, Linghao
She, Xinqi
Quan, Anlong
Peng, Yixin
Cai, Guoji
Liu, Yi
Tang, Yong
Feng, Bo
author_sort Wang, Zhibin
collection PubMed
description BiCuSeO has great application prospects in thermoelectric power generation and thermoelectric catalysis, but it is limited by its lower thermoelectric performance. Herein, BiCuSeO bulk materials were prepared using a solid-phase reaction method and a ball-milling method combined with spark plasma sintering, and then the thermoelectric properties were improved by synergistically increasing carrier concentration and mobility. Al was adopted to dope into the BiCuSeO matrix, aiming to adjust the carrier mobility through energy band adjustment. The results show that Al doping would widen the bandgap and enhance the carrier mobility of BiCuSeO. After Al doping, the thermoelectric properties of the material are improved in the middle- and high-temperature range. Based on Al doping, Pb is adopted as the doping element to dope BiCuSeO to modify the carrier concentration. The results show that Al/Pb dual doping in the BiCuSeO matrix can increase the carrier concentration under the premise of increasing carrier mobility. Therefore, the electrical conductivity of BiCuSeO can be improved while maintaining a large Seebeck coefficient. The power factor of Al/Pb doping reached ~7.67 μWcm(−1)K(−2) at 873 K. At the same time, the thermal conductivity of all doped samples within the test temperature range maintained a low level (<1.2 Wm(−1)K(−1)). Finally, the ZT value of the Al/Pb-doped BiCuSeO reached ~1.14 at 873 K, which is ~2.72 times that of the pure phase, and the thermoelectric properties of the matrix were effectively improved.
format Online
Article
Text
id pubmed-10538208
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-105382082023-09-29 Study on the Targeted Improvement Mechanism of the Carrier Concentration and Mobility of BiCuSeO Ceramics Wang, Zhibin Zhao, Hong Luo, Xinyu Han, Wenyuan Wang, Hao Meng, Linghao She, Xinqi Quan, Anlong Peng, Yixin Cai, Guoji Liu, Yi Tang, Yong Feng, Bo Micromachines (Basel) Article BiCuSeO has great application prospects in thermoelectric power generation and thermoelectric catalysis, but it is limited by its lower thermoelectric performance. Herein, BiCuSeO bulk materials were prepared using a solid-phase reaction method and a ball-milling method combined with spark plasma sintering, and then the thermoelectric properties were improved by synergistically increasing carrier concentration and mobility. Al was adopted to dope into the BiCuSeO matrix, aiming to adjust the carrier mobility through energy band adjustment. The results show that Al doping would widen the bandgap and enhance the carrier mobility of BiCuSeO. After Al doping, the thermoelectric properties of the material are improved in the middle- and high-temperature range. Based on Al doping, Pb is adopted as the doping element to dope BiCuSeO to modify the carrier concentration. The results show that Al/Pb dual doping in the BiCuSeO matrix can increase the carrier concentration under the premise of increasing carrier mobility. Therefore, the electrical conductivity of BiCuSeO can be improved while maintaining a large Seebeck coefficient. The power factor of Al/Pb doping reached ~7.67 μWcm(−1)K(−2) at 873 K. At the same time, the thermal conductivity of all doped samples within the test temperature range maintained a low level (<1.2 Wm(−1)K(−1)). Finally, the ZT value of the Al/Pb-doped BiCuSeO reached ~1.14 at 873 K, which is ~2.72 times that of the pure phase, and the thermoelectric properties of the matrix were effectively improved. MDPI 2023-09-10 /pmc/articles/PMC10538208/ /pubmed/37763920 http://dx.doi.org/10.3390/mi14091757 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Zhibin
Zhao, Hong
Luo, Xinyu
Han, Wenyuan
Wang, Hao
Meng, Linghao
She, Xinqi
Quan, Anlong
Peng, Yixin
Cai, Guoji
Liu, Yi
Tang, Yong
Feng, Bo
Study on the Targeted Improvement Mechanism of the Carrier Concentration and Mobility of BiCuSeO Ceramics
title Study on the Targeted Improvement Mechanism of the Carrier Concentration and Mobility of BiCuSeO Ceramics
title_full Study on the Targeted Improvement Mechanism of the Carrier Concentration and Mobility of BiCuSeO Ceramics
title_fullStr Study on the Targeted Improvement Mechanism of the Carrier Concentration and Mobility of BiCuSeO Ceramics
title_full_unstemmed Study on the Targeted Improvement Mechanism of the Carrier Concentration and Mobility of BiCuSeO Ceramics
title_short Study on the Targeted Improvement Mechanism of the Carrier Concentration and Mobility of BiCuSeO Ceramics
title_sort study on the targeted improvement mechanism of the carrier concentration and mobility of bicuseo ceramics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10538208/
https://www.ncbi.nlm.nih.gov/pubmed/37763920
http://dx.doi.org/10.3390/mi14091757
work_keys_str_mv AT wangzhibin studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT zhaohong studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT luoxinyu studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT hanwenyuan studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT wanghao studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT menglinghao studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT shexinqi studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT quananlong studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT pengyixin studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT caiguoji studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT liuyi studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT tangyong studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics
AT fengbo studyonthetargetedimprovementmechanismofthecarrierconcentrationandmobilityofbicuseoceramics