30Jun 2023

INVESTIGATION ON THE CRYSTALLINITY AND OPTOELECTRONIC PROPERTIES OF THIN FILMS OF ZnO/MAPbX3HETEROJUNCTIONSYNTHESIZED VIA THE SPIN-COATING METHOD

  • Departement des Sciences et Technologie Ecole Normale Superieure (ENS) dAbidjan Cote dIvoire.
  • Department 1Institut de Disseny per a la Fabricacio i Produccio Automatitzada, Universitat Politecnica de Valencia.
  • Fisica Aplicada a las Ingenierias Aeronautica y Naval & Instituto de Energia Solar, Universidad Politecnica de Madrid, Spain.
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In this paper, thin layers of ZnO were deposited onto fluorine-doped tin oxide (FTO) substrates. Subsequently, different layers of perovskite (MAPbX3, X = I, Br, Cl) were spin-coated onto these ZnO layers. The resulting layers were characterized using X-ray diffraction (XRD), UV-Visible spectroscopy, and scanning electron microscopy (SEM). Special attention was given to the surface topography, the crystallinityand optoelectronic properties.XRD analysis of all the thin layers showed two diffraction peaks for the ZnO/MAPbX3 heterojunction corresponding to the crystallographic planes (100) and (200). The ZnO/MAPbBr3 peaks were more intense than the peaks from the ZnO/MAPbI3 and ZnO/MAPbCl3 samples. SEM images showed the crystalline nature of the produced thin layers. The grain size of the ZnO/MAPbBr3 sample was approximately 747.00 nm, while those of the ZnO/MAPbI3 and ZnO/MAPbCl3 samples were 412.00 nm and 330.55 nm, respectively. UV-visible characterization demonstrated that the iodine-based sample had the highest solar radiation absorption and had the smallest bandgap, with Eg = 1.95 eV.


[Donafologo Soro, Klegayere Emmanuel Kone, Amal Bouich, Julia Mari-Guaita and Bernabe Mari Soucase (2023); INVESTIGATION ON THE CRYSTALLINITY AND OPTOELECTRONIC PROPERTIES OF THIN FILMS OF ZnO/MAPbX3HETEROJUNCTIONSYNTHESIZED VIA THE SPIN-COATING METHOD Int. J. of Adv. Res. 11 (Jun). 457-464] (ISSN 2320-5407). www.journalijar.com


Donafologo Soro


DOI:


Article DOI: 10.21474/IJAR01/17089      
DOI URL: http://dx.doi.org/10.21474/IJAR01/17089