š Education
Ph.D.: Radiation Biochemistry and Biophysics, NOVA School of Science and Technology, Portugal (Ongoing). Masters: Physics, Comilla University, Bangladesh (Completed with A+ in thesis on ZnO nanostructure thin films). Bachelors: Physics, Comilla University, Bangladesh (Honors Graduate). Specialized Training: Materials Engineering, Nanotechnology, and Nanoscience, CENIMAT, Portugal. Ummaās academic journey combines strong theoretical foundations with hands-on research expertise, fostering her keen interest in atomic and molecular physics.
š¼ Experience
Research Projects: Investigated charge transfer in molecular clusters and halide perovskites for thin film transistors at NOVA FCT. Training: Gained research experience at Atomic Energy Commission, Bangladesh, and Nanophononics Lab, CENIMAT, Portugal. Technical Skills: Proficient with equipment like Newport VeraSol, Keithley 4200 SCS, and Shimadzu spectrophotometers. Collaboration: Partnered with international research bodies, including Aarhus University and EU Framework Programme. Ummaās hands-on expertise in advanced techniques and her international collaborations amplify her contributions to materials science and nanotechnology.
š Awards and Honors
Highest Grade (A+): M.Sc. thesis project on ZnO nanostructure thin films. Published Patents: Five innovations in materials science. Research Excellence: Recognition through publications in Molecules, Journal of Quantitative Spectroscopy, and more. Global Collaborations: Partnered with esteemed organizations like CAPES, CNPq, and Aarhus University. Ummaās accolades reflect her impactful research and dedication to advancing semiconductor and nanotechnology applications.
š¬ Research Focus
Core Topics: Charge transfer processes, thin film transistors, and perovskite quantum dot synthesis. Innovations: Developing stable p-type oxide devices for CMOS technology using halide perovskites. Publications: Authored research in high-impact journals like Molecules and Journal of Photochemistry and Photobiology. Global Impact: Collaborates with EU and Brazilian research bodies to explore new synthesis routes for quantum dot materials. Ummaās research aims to bridge gaps in oxide-based technology while enhancing our understanding of molecular clusters and their charge dynamics.
Conclusion
With a blend of academic excellence, innovative research, and international collaborations, Umma Salma Akther is a commendable candidate for the Women Researcher Award. Her work aligns with the award’s goal to recognize outstanding women researchers making significant contributions to their fields. Her ongoing commitment to advancing materials science and biophysics ensures her role as a key contributor to future innovations.