Evaluating structural, morphological, and multifractal aspects of n‐ZnO/p‐ZnO homojunctions and n‐ZnO/p‐NiO heterojunctions

Author:

Ghaderi Atefeh1ORCID,Shafiekhani Azizollah1ORCID,Ţălu Ştefan2ORCID,Dejam Laya3ORCID,Solaymani Shahram4ORCID,Morozov Ilya A.5ORCID,Matos Robert S.6ORCID,Ferreira Nilson S.7ORCID,Sari Amir H.4ORCID

Affiliation:

1. Department of Theo. Physics and Nano, Faculty of Physics Alzahra University Tehran 1993891167 Iran

2. The Directorate of Research, Development and Innovation Management (DMCDI) Technical University of Cluj‐Napoca Constantin Daicoviciu St., no. 15 Cluj‐Napoca Cluj country 400020 Romania

3. Department of Physics, West Tehran Branch Islamic Azad University Tehran Iran

4. Quantum Technologies Research Center (QTRC), Science and Research Branch Islamic Azad University Tehran Iran

5. Institute of Continuous Media Mechanics UB RAS 1 Korolev Street Perm 614013 Russia

6. Amazonian Materials Group, Department of Physics Federal University of Amapá Macapá 68903‐419 Brazil

7. Department of Physics Federal University of Sergipe São Cristovão 49100‐000 Brazil

Abstract

AbstractWe have investigated the evolution of the structure and surface morphology of n‐ZnO/p‐ZnO homojunctions and n‐ZnO/p‐NiO heterojunctions transparent structures deposited by radio frequency‐sputtering on quartz (Q)/ITO substrates. X‐ray diffraction (XRD) analysis of the as‐deposited and annealed ZnO, n‐ZnO/p‐NiO/Q/ITO, and n‐ZnO/p‐ZnO/Q/ITO thin films showed that ZnO had a wurtzite hexagonal structure and (002) preferred growth direction. The annealing temperature played a key role in improving the crystalline structure of the films, as evidenced by the changes in the intensity and position of the XRD (002) peak. Morphological analysis revealed that the roughness of the film varies with increasing annealing temperature. Particle size dictates the vertical growth of p‐ZnO homojunctions, while particle shape dictated the p‐NiO heterojunctions growth. Fractal analysis showed that p‐ZnO homojunctions have similar spatial complexity, surface percolation, and topographical uniformity and are dominated by low dominant frequencies. Moreover, a robust multifractal character was observed, where n‐ZnO/p‐ZnO homojunctions follow similar vertical growth dynamics, which differed from the n‐ZnO/p‐NiO heterojunctions growth dynamics. These results prove that annealing temperature plays a key role in the n‐ZnO/p‐ZnO homojunctions and n‐ZnO/p‐NiO heterojunctions structure, surface morphology, and vertical growth dynamics.

Publisher

Wiley

Subject

Medical Laboratory Technology,Instrumentation,Histology,Anatomy

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