Environmental effect on structural, magnetic, and dielectric properties of BFO nanostructure and its solar cell applications

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作者
Amir Muhammad Afzal
Alina Manzoor
Muhammad Zahir Iqbal
Yasir Javed
Abdul Hakeem Deshmukh
Rajwali Khan
Naveed Akhtar Shad
M. Munir Sajid
Meshal Alzaid
Umair Anwar
机构
[1] Kwangwoon University,Department of Electrical and Biological Physics
[2] GC University,Department of Physics
[3] GIK Institute of Engineering Sciences and Technology,Nanotechnology Research Laboratory, Faculty of Engineering Sciences
[4] University of Agriculture,Department of Physics
[5] Guangdong University of Technology,Key Laboratory of Clean Chemistry Technology of Guangdong Regular Higher Education Institution, Department of Chemical Engineering and Light Industry
[6] Shenzhen University,School of Physics and Optoelectronics Engineering
[7] Jouf University,Physics Department, College of Science
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摘要
Single-phase bismuth ferrite (BFO) nanostructure is an intriguing contender in ferrite materials due to high magnetization and polarization at room temperature. In this study, the structural, electrical, magnetic, dielectric, and photovoltaic properties of BFO nanostructure are presented under different environments. To inspect the impact of annealing environments on structure and morphology, the prepared BFO samples are characterized by X-Ray diffraction (XRD), scanning electron microscope (SEM), and transmission electron microscopy (TEM). Further, we examined the annealing effect on magnetic, electric, dielectric properties, and power conversion efficiency (PCE). The leakage current is decreased up to 4 times as compared to the reference sample, by reducing the dielectric loss. Besides, a BFO/ZnO heterostructure device is fabricated by using the graphene/ITO hybrid electrode to investigate the photovoltaic characteristics. The PCE is improved from 4.2 to 6.1% by using the hybrid transparent electrode composed by graphene and ITO and annealing in an oxygen atmosphere. Besides, the external quantum efficiency (EQE) with responsivity (R) of the heterostructure device is also enhanced. So, the perfection in the vital parameter of BFO nanoparticles evidently emphasize the prominence of the annealing atmosphere in BFO nanoparticles applications.
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页码:3313 / 3323
页数:10
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