Cargando…

Design of N‐Type Textured Bi(2)Te(3) with Robust Mechanical Properties for Thermoelectric Micro‐Refrigeration Application

Thermoelectric refrigeration is one of the mature techniques used for cooling applications, with the great advantage of miniaturization over traditional compression refrigeration. Due to the anisotropic thermoelectric properties of n‐type bismuth telluride (Bi(2)Te(3)) alloys, these two common metho...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhu, Yu‐Ke, Jin, Yifan, Zhu, Jianbo, Dong, Xingyan, Liu, Ming, Sun, Yuxin, Guo, Muchun, Li, Fushan, Guo, Fengkai, Zhang, Qian, Liu, Zihang, Cai, Wei, Sui, Jiehe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9951298/
https://www.ncbi.nlm.nih.gov/pubmed/36581501
http://dx.doi.org/10.1002/advs.202206395
_version_ 1784893357517963264
author Zhu, Yu‐Ke
Jin, Yifan
Zhu, Jianbo
Dong, Xingyan
Liu, Ming
Sun, Yuxin
Guo, Muchun
Li, Fushan
Guo, Fengkai
Zhang, Qian
Liu, Zihang
Cai, Wei
Sui, Jiehe
author_facet Zhu, Yu‐Ke
Jin, Yifan
Zhu, Jianbo
Dong, Xingyan
Liu, Ming
Sun, Yuxin
Guo, Muchun
Li, Fushan
Guo, Fengkai
Zhang, Qian
Liu, Zihang
Cai, Wei
Sui, Jiehe
author_sort Zhu, Yu‐Ke
collection PubMed
description Thermoelectric refrigeration is one of the mature techniques used for cooling applications, with the great advantage of miniaturization over traditional compression refrigeration. Due to the anisotropic thermoelectric properties of n‐type bismuth telluride (Bi(2)Te(3)) alloys, these two common methods, including the liquid phase hot deformation (LPHD) and traditional hot forging (HF) methods, are of considerable importance for texture engineering to enhance performance. However, their effects on thermoelectric and mechanical properties are still controversial and not clear yet. Moreover, there has been little documentation of mechanical properties related to micro‐refrigeration applications. In this work, the above‐mentioned methods are separately employed to control the macroscopic grain orientation for bulk n‐type Bi(2)Te(3) samples. The HF method enabled the stabilization of both composition and carrier concentration, therefore yielding a higher quality factor to compare with that of LPHD samples, supported by DFT calculations. In addition to superior thermoelectric performance, the HF sample also exhibited robust mechanical properties due to the presence of nano‐scale distortion and dense dislocation, which is the prerequisite for realizing ultra‐precision machining. This work helps to pave the way for the utilization of n‐type Bi(2)Te(3) for commercial micro‐refrigeration applications.
format Online
Article
Text
id pubmed-9951298
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-99512982023-02-25 Design of N‐Type Textured Bi(2)Te(3) with Robust Mechanical Properties for Thermoelectric Micro‐Refrigeration Application Zhu, Yu‐Ke Jin, Yifan Zhu, Jianbo Dong, Xingyan Liu, Ming Sun, Yuxin Guo, Muchun Li, Fushan Guo, Fengkai Zhang, Qian Liu, Zihang Cai, Wei Sui, Jiehe Adv Sci (Weinh) Research Articles Thermoelectric refrigeration is one of the mature techniques used for cooling applications, with the great advantage of miniaturization over traditional compression refrigeration. Due to the anisotropic thermoelectric properties of n‐type bismuth telluride (Bi(2)Te(3)) alloys, these two common methods, including the liquid phase hot deformation (LPHD) and traditional hot forging (HF) methods, are of considerable importance for texture engineering to enhance performance. However, their effects on thermoelectric and mechanical properties are still controversial and not clear yet. Moreover, there has been little documentation of mechanical properties related to micro‐refrigeration applications. In this work, the above‐mentioned methods are separately employed to control the macroscopic grain orientation for bulk n‐type Bi(2)Te(3) samples. The HF method enabled the stabilization of both composition and carrier concentration, therefore yielding a higher quality factor to compare with that of LPHD samples, supported by DFT calculations. In addition to superior thermoelectric performance, the HF sample also exhibited robust mechanical properties due to the presence of nano‐scale distortion and dense dislocation, which is the prerequisite for realizing ultra‐precision machining. This work helps to pave the way for the utilization of n‐type Bi(2)Te(3) for commercial micro‐refrigeration applications. John Wiley and Sons Inc. 2022-12-29 /pmc/articles/PMC9951298/ /pubmed/36581501 http://dx.doi.org/10.1002/advs.202206395 Text en © 2022 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Zhu, Yu‐Ke
Jin, Yifan
Zhu, Jianbo
Dong, Xingyan
Liu, Ming
Sun, Yuxin
Guo, Muchun
Li, Fushan
Guo, Fengkai
Zhang, Qian
Liu, Zihang
Cai, Wei
Sui, Jiehe
Design of N‐Type Textured Bi(2)Te(3) with Robust Mechanical Properties for Thermoelectric Micro‐Refrigeration Application
title Design of N‐Type Textured Bi(2)Te(3) with Robust Mechanical Properties for Thermoelectric Micro‐Refrigeration Application
title_full Design of N‐Type Textured Bi(2)Te(3) with Robust Mechanical Properties for Thermoelectric Micro‐Refrigeration Application
title_fullStr Design of N‐Type Textured Bi(2)Te(3) with Robust Mechanical Properties for Thermoelectric Micro‐Refrigeration Application
title_full_unstemmed Design of N‐Type Textured Bi(2)Te(3) with Robust Mechanical Properties for Thermoelectric Micro‐Refrigeration Application
title_short Design of N‐Type Textured Bi(2)Te(3) with Robust Mechanical Properties for Thermoelectric Micro‐Refrigeration Application
title_sort design of n‐type textured bi(2)te(3) with robust mechanical properties for thermoelectric micro‐refrigeration application
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9951298/
https://www.ncbi.nlm.nih.gov/pubmed/36581501
http://dx.doi.org/10.1002/advs.202206395
work_keys_str_mv AT zhuyuke designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT jinyifan designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT zhujianbo designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT dongxingyan designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT liuming designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT sunyuxin designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT guomuchun designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT lifushan designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT guofengkai designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT zhangqian designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT liuzihang designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT caiwei designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication
AT suijiehe designofntypetexturedbi2te3withrobustmechanicalpropertiesforthermoelectricmicrorefrigerationapplication