Research
We are doing synthetic organic chemistry with a focus on Asymmetric Synthesis, Catalysis and Reaction Methodology. Our team of experts is dedicated to conducting cutting-edge research and providing top-quality results. Our state-of-the-art facilities and advanced equipment allow us to conduct experiments with precision and accuracy, ensuring reliable results. We are committed to advancing the field of Synthetic Organic Chemistry and contributing to the scientific community.
Asymmetric Organocatalysis
Our research explores asymmetric organocatalysis for the development of efficient and stereoselective methods for the synthesis of complex, value-added molecules. A particular focus is placed on isothiourea catalysis, where chiral Lewis base catalysts enable the generation of reactive intermediates such as acyl ammonium and C1-ammonium enolates. These catalytic strategies provide powerful opportunities for enantioselective C–C and C–heteroatom bond formation, allowing access to structurally diverse and stereochemically rich molecules under mild conditions.

Asymmetric Photoredox Catalysis and Electrochemistry
Our research explores asymmetric photoredox catalysis, electrochemistry, and radical chemistry to develop innovative and stereoselective synthetic methodologies. By harnessing visible light and electrical energy, we generate and control reactive radical and radical-ion intermediates for efficient C–C and C–heteroatom bond formation. The integration of these approaches with asymmetric organocatalysis enables new reaction pathways with high levels of reactivity, selectivity, and stereochemical control.



C-C, C-X bond formation