Structural and thermoelectric properties of nanostructured p-SnO thin films grown by e-beam evaporation method

被引:3
|
作者
Javaid K. [1 ,6 ]
Ashfaq M. [1 ]
Saleem M. [1 ]
Amin N. [1 ]
Ali A. [1 ]
Mahmood K. [1 ]
Ikram S. [1 ]
Khalil A. [2 ]
Wattoo A.G. [2 ]
Islam A. [3 ]
Alzaid M. [4 ]
Alrobei H. [5 ]
Liang L. [6 ]
Cao H. [6 ]
机构
[1] Department of Physics, Government College University Faisalabad, Allama Iqbal Road, Faisalabad
[2] Department of Physics, Khawaja Fareed University of Engineering and Information Technology, Rahim Yar Khan
[3] E-ICT–Culture-Sports Convergence Track, Korea University Sejong Campus, 2511 Sejong-ro, Sejong
[4] Physics Department, College of Science, Jouf University, P.O. Box: 2014, Sakaka
[5] Department of Mechanical Engineering, College of Engineering, Prince Sattam Bin Abdulaziz University, AlKharj
[6] Division of Functional Materials and Nano Devices, Ningbo Institute of Materials Technology and Engineering (NIMTE), Chinese Academy of Sciences (CAS), Ningbo
关键词
Electron beam evaporation; Nanostructures; Power factor; Rapid thermal annealing; Seebeck coefficient; SnO thin films;
D O I
10.1016/j.ijhydene.2021.09.128
中图分类号
学科分类号
摘要
Today, the earnest need for earth-abundant and environmentally friendly thermoelectric materials has revealed the importance of semiconductor metal oxides in order to eliminate the barrier towards their wide-ranging use in industrial applications. In the present work, we demonstrate the synthesis of p-type tin oxide thin films on quartz glass and Si substrates by using electron beam evaporation technique followed by rapid thermal annealing process at 200 °C for 20 min in Ar-atmosphere. Annealing-induced structural, electrical, optical and thermoelectric properties of pristine and annealed SnO thin films are primarily studied. The compositional and structural analysis of SnO films are performed by using X-Ray Diffraction, Scanning Electron Microscope as well as Atomic Force Microscope. Moreover, the mechanism of thermoelectric transportation at different measurement temperatures is deeply inspected via thermoelectric measurements. The Seebeck coefficient, carrier concentration and hole mobility in conjunction with the development of thin film nanostructures are discussed, predominantly. The optimal annealing may tune structural, electro-optic and thermoelectric properties of SnO films for the commercial-level maturity of thermoelectric devices for energy applications. © 2021 Hydrogen Energy Publications LLC
引用
收藏
页码:15547 / 15555
页数:8
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