Yamina Mebdoua Lahmar | Materials sciences | Women Researcher Award

Dr. Yamina Mebdoua Lahmar | Materials sciences | Women Researcher Award

Research Director | Advanced Technology Development Center | Algeria

Yamina Mebdoua-Lahmar is a prominent researcher and academic in the field of materials science and surface treatment, with a focus on thermal spraying techniques. Currently serving as the Director of Research at the Centre de Développement des Technologies Avancées (CDTA) in Algeria, she has made significant contributions to the development of advanced coatings and surface treatments. Her academic journey spans several decades, during which she has attained advanced degrees and built a distinguished career. Her research interests and leadership have positioned her as an expert in the areas of materials characterization, surface engineering, and applied physics.

Profile

Education

Dr. Mebdoua-Lahmar holds a comprehensive academic background. She obtained her Doctorate in Ceramic Materials and Surface Treatment from the University of Limoges, France, in 2008. Before this, she earned a Magister in Physics, specializing in Astrophysics, from the University of Blida in 1998. Her advanced studies culminated in an Habilitation in Physics from the University of Blida in 2014. Additionally, Dr. Mebdoua-Lahmar completed a Diplôme d’Etudes Supérieures in Physics at the University of Algiers in 1992. She also holds a Baccalaureate in Mathematics from 1987.

Experience

Dr. Mebdoua-Lahmar has an extensive career at CDTA, spanning over two decades. She started as a Research Attaché in 1998 and progressed through the ranks, becoming a Research Director in 2016. Over the years, she has held leadership roles, such as the Director of the “Ionized Media and Laser” Research Division (2012-2015) and Head of the Thermal Spray Team (2013-2020). She currently leads the Thermal Spray Technology Platform at CDTA, overseeing several research projects. Her involvement in numerous projects includes developing coatings resistant to wear and erosion, thermal barrier coatings, and cold spray deposition techniques. Dr. Mebdoua-Lahmar also served as an elected member of the CDTA Scientific Council from 2019 to 2023 and as its President in 2022-2023.

Research Interests

Dr. Mebdoua-Lahmar’s primary research interests lie in surface engineering, specifically the use of thermal spray processes to create protective coatings. Her work covers various applications, from wear-resistant coatings for industrial use to thermal barrier coatings and modeling of deposition processes such as cold spray. Additionally, she has explored the use of advanced materials for corrosion protection and the integration of energetic devices on nonconductive substrates. Her research also extends to numerical studies and modeling of heat transfer during coating formation, as well as the mechanical and electrochemical properties of thermally sprayed materials.

Award

Dr. Yamina Mebdoua-Lahmar, it seems that she is indeed a highly qualified and suitable candidate for the Best Researcher Award. Below is a structured analysis:

Publication Top Note

Rabah Azzoug, Yamina Mebdoua, Fatah Hellal, “Microstructural, Mechanical and Electrochemical Characterization of a Flame Sprayed NiFeCrBSi/WC Cermet Coating,” 21-25, 2022.

R. Azzoug, Y. Mebdoua, F. Hellal, F. Marra, “Analysis of Microstructure, Mechanical Indentation and Corrosive Behavior of a Thermally Sprayed NiFeCrBSi-WC Composite Coating,” Journal of Alloys and Compounds, December 2021, DOI:10.1016/j.jallcom.2021.163505.

O. Sifi, M. Djeghlal, Y. Mebdoua, S. Djeraf, F Hadj-Larbi, “The effect of the solution and aging treatments on the microstructures and microhardness of nickel-based superalloy,” Applied Physics A, 2020, DOI:10.1007/s00339-020-03517-2.

Y. Mebdoua, Y. Fizi, N. Bouhelal, “Cold sprayed copper coating: numerical study of particle impact and coating characterization,” Eur. Phys. J. Appl. Phys., 2016, 74, 24608. DOI:10.1051/epjap/2015150316.

Y. Mebdoua, A. Vardelle, P. Fauchais, “Heat Diffusion in Solidifying Alumina Splat Deposited on Solid Substrate under Plasma sprayed Conditions: Application to Coating Formation,” Defect and Diffusion Forum, 2010.

Y. Mebdoua, A. Vardelle, P. Fauchais, “Numerical Study of Alumina Nucleation Deposited on Steel Substrate under Plasma Spray Conditions,” International Journal of Thermal Sciences, 2010.

S. Djerourou, H. Lahmar, N. Bouhellal, Y. Mebdoua, “Study of Twin Wire Arc Sprayed Zinc/Aluminum Coating on Low carbon Steel Substrate: Application to Corrosion Protection,” Advanced Materials Research, 2013, Vol 685.

Conclusion

Dr. Yamina Mebdoua-Lahmar’s career is marked by significant contributions to the field of materials science, particularly in the area of surface treatments and thermal spraying. Through her leadership at the CDTA, she has advanced numerous groundbreaking projects and contributed to the development of innovative materials with industrial applications. Her academic and professional achievements have established her as a leading expert in the field. Through continuous research, teaching, and active participation in scientific conferences, Dr. Mebdoua-Lahmar remains a pivotal figure in the ongoing evolution of surface treatment technologies and material sciences.

Azam Sobhani | Nanomaterials | Best Researcher Award

Dr. Azam Sobhani | Nanomaterials | Best Researcher Award

Associate Professor | Kosar university of Bojnord | Iran

Azam Sobhani is an Associate Professor in the Department of Chemistry at Kosar University of Bojnord, Iran. He earned his undergraduate, graduate, and doctoral degrees from leading Iranian universities under the mentorship of Professor Masoud Salavati-Niasari. His research interests encompass nanomaterials, nanostructures, nanoparticles, nanocrystals, and inorganic chemistry. Over his career, he has co-authored several influential publications in these fields.

Profile

Scholar

Education

Professor Sobhani’s academic journey began with his undergraduate studies at a prominent Iranian institution, followed by graduate and doctoral research under Professor Masoud Salavati-Niasari. His doctoral research focused on the synthesis and characterization of nanomaterials, which laid the foundation for his current research trajectory.

Experience

Since joining Kosar University of Bojnord in 2015, Professor Sobhani has advanced from Assistant Professor to Associate Professor. In his role, he teaches undergraduate and graduate courses in chemistry, supervises student research, and leads projects on nanomaterials and nanostructures.

Research Interests

Professor Sobhani’s research centers on the development and application of nanomaterials. His work includes the synthesis of various nanocomposites with potential applications in environmental remediation and energy storage. Notably, he has explored the use of green sonochemical methods to synthesize BaDy₂NiO₅/Dy₂O₃ and BaDy₂NiO₅/NiO nanocomposites, utilizing core almond as a capping agent. These nanocomposites have demonstrated efficacy as photocatalysts for removing organic dyes from water.

Award

Based on the information provided, Associate Professor Azam Sobhani appears to be a strong candidate for the Research for Best Researcher Award. He holds a position at Kosar University of Bojnord, an institution recognized for its commitment to women’s education in northeastern Iran.

Publications Top Note

Yousefi, S. R., Sobhani, A., Alshamsi, H. A., & Salavati-Niasari, M. (2021). Green sonochemical synthesis of BaDy₂NiO₅/Dy₂O₃ and BaDy₂NiO₅/NiO nanocomposites in the presence of core almond as a capping agent and their application as photocatalysts for the removal of organic dyes in water. RSC Advances.

Yousefi, S. R., Sobhani, A., & Salavati-Niasari, M. (2017). A new nanocomposite superionic system (CdHgI₄/HgI₂): Synthesis, characterization, and experimental investigation. Advanced Powder Technology.

Ansari, F., Sobhani, A., & Salavati-Niasari, M. (2018). Simple sol-gel synthesis and characterization of new CoTiO₃/CoFe₂O₄ nanocomposite by using liquid glucose, maltose, and starch as fuel, capping, and reducing agents. Journal of Colloid and Interface Science.

Ansari, F., Sobhani, A., & Salavati-Niasari, M. (2016). Green synthesis of magnetic chitosan nanocomposites by a new sol–gel auto-combustion method. Journal of Magnetism and Magnetic Materials.

Orooji, Y., Mohassel, R., Amiri, O., Sobhani, A., & Salavati-Niasari, M. (2020). Gd₂ZnMnO₆/ZnO nanocomposites: Green sol-gel auto-combustion synthesis, characterization, and photocatalytic degradation of different dye pollutants in water. Journal of Alloys and Compounds.

Conclusion

Professor Azam Sobhani’s contributions to nanomaterials research have significantly advanced the understanding and application of nanocomposites in environmental and energy sectors. His dedication to sustainable synthesis methods and practical applications continues to influence the field and inspire future research.