I am a research scientist and physicist with extensive experience in experimental and computational condensed matter physics, specializing in the modeling and characterization of nanomaterials, conjugated polymers, and functional materials for optoelectronic applications. My research integrates theory, simulation, and data-driven analysis to understand structure-property relationships, with a strong emphasis on reproducibility, quantitative modeling, and physical interpretation.
As a senior lecturer, I have over 15 years of university-level teaching and academic leadership experience, delivering undergraduate and graduate courses in physics, materials science, applied mathematics, and computational methods. I have taught across diverse international institutions and learning environments, combining rigorous conceptual foundations with hands-on problem solving, laboratory instruction, and computational modeling to prepare students for research and industry careers.
My academic work is complemented by research supervision, curriculum development, and mentorship, including guiding students from introductory physics through advanced research projects and graduate studies. I am deeply committed to scholarly excellence, interdisciplinary collaboration, and the translation of fundamental physics into impactful applications in materials science, data science, and emerging AI-driven