CORDIS Project
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This project explores a new type of light chirality, called local chirality, to enhance the synthesis and separation of chiral molecules. By leveraging electric-dipole interactions, it aims to achieve efficient enantioselective processes that could significantly improve methods in chemistry and nanotechnology.
Molecular chirality has profound as well as practical implications in chemistry, biology, and nanotechnology.
While light is well established for distinguishing between opposite molecular enantiomers and there have been incredible advances in light sources, established methods for enantioselective synthesis and separation still rely on molecule-molecule interactions because the chirality of light couples only weakly to the chirality of molecules.
This smallness stems from the dependence of this…
FUNDACIO INSTITUT DE CIENCIES FOTONIQUES
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