Kenza Kamli
Physics Thin film solar cell Silicon and Solar Cell Technologies Electronic and Structural Properties of Oxides Chalcogenide Semiconductor Thin Films Perovskite solar cell Plasmonic solar cell Chemical and Physical Properties of Materials Oxide thin-film transistor Electrophoretic Deposition in Materials Science Thin-Film Transistor Technologies Thin film Metal and Thin Film Mechanics Hybrid physical-chemical vapor deposition ZnO doping and properties 2D Materials and Applications Advanced ceramic materials synthesis Perovskite Materials and Applications Crystal Structures and Properties Equivalent oxide thickness Ceramics and Composites Electrical and Electronic Engineering Electronic, Optical and Magnetic Materials Materials Chemistry Mechanics of Materials

Bio

Dr. Kenza Kamli is a physicist specializing in semiconductor thin films and solar cell applications. She earned her Doctorate in Physics from 20 Août 1955 University, Skikda, and is affiliated with the Laboratoire des Semi-conducteurs at Badji-Mokhtar University, Annaba, Algeria. Her research focuses on the elaboration and characterization of thin films such as SnS2 and CuO for optoelectronic devices. With 28 publications, 151 citations, an h-index of 6, and an i10-index of 6, she has made significant contributions to materials science.

Educational Journey

20 August 1955 University Skikda

Doctor • Physics

Experience

0 - 0 • Dpartement de Physique

Research

Elaboration of SnS2 thin Films by Ultrasonic Spray for Solar Cell Application

Article January 8, 2018

Thin films of tin disulfide (SnS2) semiconductor have been fabricated using spray pyrolysis method. SnS2 were deposited from aqueous solution containing SnCl4, 2H2O and CS(NH2)2 at various molar concentrations. The structural, morphological and optical properties of the obtained films were investigated. XRD and SEM data suggest that good quality of SnS2 is obtained at 0.08 mol/l. The optical analyses show that the films prepared at 0.08 mol/l present the highest transmittance in the visible region. The obtained results confirm that SnS2 thin films can be good candidates for solar cells devices. These results are of great importance in the prediction of the good application of SnS2 thin films in solar cells.