Daniela De Luca works on next-generation perovskite solar cells, with particular emphasis on scalable manufacturing and vacuum-based processing approaches. Her research is centered on using Hybrid methods translating metal halide perovskites toward industrially relevant, large-area device fabrication while maintaining strong performance and material quality.
Riyas Ahmad is interested in crystal growth, film formation, and structural control in hybrid perovskites. His work focuses on crystallization pathways, oriented film growth, and the relationship between microstructure and device performance, contributing to the development of highly crystalline and efficient perovskite solar cells. His primary method of synthesis is Hybrid deposition.
Luke R. W. White researches thermally evaporated metal halide perovskites for optoelectronic devices. His work at NTU focused on multiple quantum wells, quantum confinement, and ultrathin perovskite solar cells, linking controlled thin-film growth to light emission, photodetection, and photovoltaic performance.
Vipinraj Sugathan studies lead-free perovskite-inspired semiconductors for photovoltaics and photodetectors. His research spans solution-processed thin films, halide and composition engineering, and charge-transfer interfaces, with particular interest in bismuth- and antimony-based materials for solar cells and indoor light harvesting.