Area of research
Organic Chemistry · Spectroscopy
Research interest
Research focused on Enantiopure drug and Catalysis, with related work in Crystallography, Vanadium, Chirality (physics). Notable publications include 'Emergence of Hemicryptophanes: From Synthesis to Applications for Recognition, Molecular Machines, and Supramolecular Catalysis', 'Enantiopure [Cs + /Xe⊂Cryptophane]⊂Fe II 4 L 4 Hierarchical Superstructures', and 'Anion Binding in Water Drives Structural Adaptation in an Azaphosphatrane-Functionalized Fe II 4 L 4 Tetrahedron'.
Subtle Stereochemical Effects Influence Binding and Purification Abilities of an Fe<sup>II</sup><sub>4</sub>L<sub>4</sub> Cage
CO<sub>2</sub> atmosphere enables efficient catalytic hydration of ethylene oxide by ionic liquids/organic bases at low water/epoxide ratios
Enantiopure [Cs<sup>+</sup>/Xe⊂Cryptophane]⊂Fe<sup>II</sup><sub>4</sub>L<sub>4</sub> Hierarchical Superstructures
Bioinspired Oxidation of Methane in the Confined Spaces of Molecular Cages
Emergence of Hemicryptophanes: From Synthesis to Applications for Recognition, Molecular Machines, and Supramolecular Catalysis
Anion Binding in Water Drives Structural Adaptation in an Azaphosphatrane-Functionalized Fe<sup>II</sup><sub>4</sub>L<sub>4</sub> Tetrahedron
Sulfoxidation inside a <i>C</i><sub>3</sub>-Vanadium(V) Bowl-Shaped Catalyst
“Breathing” Motion of a Modulable Molecular Cavity
Synthesis, Resolution, and Absolute Configuration of Chiral Tris(2-pyridylmethyl)amine-Based Hemicryptophane Molecular Cages
Helical, Axial, and Central Chirality Combined in a Single Cage: Synthesis, Absolute Configuration, and Recognition Properties
Large‐Scale Synthesis of Enantiopure Molecular Cages: Chiroptical and Recognition Properties