
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 detailsThe 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.
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.
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

Senior Researcher in Polymer Materials, Nanocomposites and Sustainable Materials Engineering
Sherif Keshk specialises in polymer materials, nanocomposites and sustainable materials engineering.
View details
Senior Researcher in Polymer Materials, Nanocomposites and Sustainable Materials Engineering
Sherif Keshk specialises in polymer materials, nanocomposites and sustainable materials engineering.
View details