Enhanced CuO Thin Film Growth via an Optimized Aerosol Droplet Method: Thermal Effects and Structural Evaluation

The scalable production of high-quality copper oxide (CuO) thin films remains challenging for semiconductor and gas sensor applications. This study presents an optimized aerosol droplet method (AMD) that enhances film uniformity and crystallinity through improved substrate positioning and aerosol dynamics.

Research article

Fathi Omri
Wafa Selmi
Mohamed Saidani
H. Elhosiny Ali
Jean‐Louis Lazzari
Marc Bendahan
Sherif M.A.S. Keshk
Wissem Dimassi

The scalable production of high-quality copper oxide (CuO) thin films remains challenging for semiconductor and gas sensor applications. This study presents an optimized aerosol droplet method (AMD) that enhances film uniformity and crystallinity through improved substrate positioning and aerosol dynamics.

Publication date
2025-06-21
Journal / proceedings
Advanced Optical Materials
Publisher
Wiley
Volume
13
Issue
22
Article number
2500980
DOI
10.1002/adom.202500980

Related expertise

Citation

Fathi Omri; Wafa Selmi; Mohamed Saidani; H. Elhosiny Ali; Jean‐Louis Lazzari; Marc Bendahan; Sherif M.A.S. Keshk; Wissem Dimassi. 2025-06-21. Enhanced CuO Thin Film Growth via an Optimized Aerosol Droplet Method: Thermal Effects and Structural Evaluation. Advanced Optical Materials. https://doi.org/10.1002/adom.202500980

BECOME contributors

Prof. Sherif M. A. S. Keshk
ExpertScientist

Prof. Sherif M. A. S. Keshk

Senior Researcher in Polymer Materials, Nanocomposites and Sustainable Materials Engineering

Sherif Keshk specialises in polymer materials, nanocomposites and sustainable materials engineering.

View details

Publication by a BECOME Researcher

Affiliations as published
Fathi Omri: Laboratory of Nanomaterials and Renewable Energy Systems Research and Technology Center of energy Borj Cedria, BP, 95 Hammam Lif 2050 Tunisia; Faculty of Science Campus University of Tunis El Manar Tunis 2092 Tunisia
Wafa Selmi: Laboratory of Nanomaterials and Renewable Energy Systems Research and Technology Center of energy Borj Cedria, BP, 95 Hammam Lif 2050 Tunisia
Mohamed Saidani: Laboratory of Nanomaterials and Renewable Energy Systems Research and Technology Center of energy Borj Cedria, BP, 95 Hammam Lif 2050 Tunisia
H. Elhosiny Ali: Department of Physics Faculty of Science King Khalid University P.O. Box 9004 Abha 61413 Saudi Arabia
Jean‐Louis Lazzari: Aix Marseille Univ CNRS, CNAM Marseille 7325 France
Marc Bendahan: Aix Marseille Univ Université de Toulon CNRS, IM2NP Marseille 7334 France
Sherif M.A.S. Keshk: Become: Deep Tech & Nanoscience 63 rue de Tolbiac Paris 75013 France
Wissem Dimassi: Laboratory of Nanomaterials and Renewable Energy Systems Research and Technology Center of energy Borj Cedria, BP, 95 Hammam Lif 2050 Tunisia
ISSN
2195-1071, 2195-1071

Scientific authors are listed above. Content record maintained by BECOME.

Related researchers

Prof. Sherif M. A. S. Keshk
ExpertScientist

Prof. Sherif M. A. S. Keshk

Senior Researcher in Polymer Materials, Nanocomposites and Sustainable Materials Engineering

Sherif Keshk specialises in polymer materials, nanocomposites and sustainable materials engineering.

View details