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Ahmed Mourtada Elseman

Ahmed Mourtada Elseman

Head of Department


Education


Degree Field Uni and Faculty Date
PhD Inorganic and Analytical Chemistry Faculty of Science, Al-Azhar University, Egypt 2017
Diploma Technology and Application for New Energy Institute of New Energy, Wuhan, China 2017
Diploma wind and solar power application technology based on the climatic Inner Mongolia Institute of Scientific and Technological Cooperation and Innovation Development, Hohhot, China 2015
M.Sc Inorganic and Analytical Chemistry Faculty of Science, Al-Azhar University, Egypt 2013
B.Sc Special Chemistry Department Faculty of Science, Al-Azhar University, Egypt 2007

Professional Experience


Date Position Organization
10/2021 – present Acting Head of Electronic and Magnetic Materials Department, Advanced Materials Institute Central Metallurgical Research and Development Institute, CMRDI, Egypt
4/2017 – 2022 Research Assistant Professor, Electronic and Magnetic Materials Department, Advanced Materials Institute Central Metallurgical Research and Development Institute, CMRDI, Egypt
9/2018 – 9/2020 Lecturer, Institute of Clean Energy and Advanced Materials School of Materials and Energy, Southwest University, Chongqing. China
5/2017 – 5/2018 Postdoctoral Research Fellow, State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources North China Electric Power University, Beijing, China
3/2014 – 4/2017 Assistant Researcher, Electronic and Magnetic Materials Department, Advanced Materials Institute Central Metallurgical Research & Development Institute (CMRDI), Helwan, Cairo, Egypt
1/2012 – 3/2014 Researcher Assistant, Electronic and Magnetic Materials Department, Advanced Materials Institute Central Metallurgical Research & Development Institute (CMRDI), Helwan, Cairo, Egypt
10/2010 – 1/2012 Part-time research assistant National Research Centre (NRC), Giza, Egypt

Research Interests:


• Construction and development of ETLs and HTMs for Perovskite-based PV cells.
• Nano-scale Structure Properties Relation in Perovskite Solar Cells.
• Green Chemistry Principle as efficient Design for Energy Efficiency.
• Nano-scale materials preparation and characterization of strongly correlated crystal structures and surface morphology.
• Preparation and characterization techniques related to a range of photovoltaic cells.


PUBLICATIONS:


scholar ResearchGate Scopus publons