Area of research
Organic Chemistry · Process Chemistry and Technology
Research interest
Research interests include Chemistry, Catalysis, Styrene oxide, Epoxide, Vanadium, and Palladium.
Integrated, one-pot carbon capture and utilisation using porous ionic liquids
Enantio- and Substrate-Selective Recognition of Chiral Neurotransmitters with <i>C</i><sub>3</sub>-Symmetric Switchable Receptors
Bioinspired Oxidation of Methane in the Confined Spaces of Molecular Cages
Removal of Volatile Organic Compounds from Bulk and Emulsion Polymers: A Comprehensive Survey of the Existing Techniques
Investigating the role of SBA-15 silica on the activity of quaternary ammonium halides in the coupling of epoxides and CO2
Endohedral Functionalized Cage as a Tool to Create Frustrated Lewis Pairs
W-SBA based materials as efficient catalysts for the ODS of model and real feeds: Improvement of their lifetime through active phase encapsulation
A new heterogeneous host–guest catalytic system as an eco-friendly approach for the synthesis of cyclic carbonates from CO<sub>2</sub> and epoxides
Zinc–Azatrane Complexes as Efficient Catalysts for the Conversion of Carbon Dioxide into Cyclic Carbonates
Sulfoxidation inside a <i>C</i><sub>3</sub>-Vanadium(V) Bowl-Shaped Catalyst
Isomerization of n-hexane over Pt‐H3PW12O40/SBA-15 bifunctional catalysts: Effect of the preparation method on catalytic performance
Investigating Host–Guest Complexes in the Catalytic Synthesis of Cyclic Carbonates from Styrene Oxide and CO<sub>2</sub>
Azaphosphatrane Organocatalysts in Confined Space: Cage Effect in CO<sub>2</sub> Conversion
Catalytic Activity of an Encaged Verkade’s Superbase in a Base-Catalyzed Diels–Alder Reaction
Azaphosphatranes as Structurally Tunable Organocatalysts for Carbonate Synthesis from CO<sub>2</sub> and Epoxides
Carbonylative Sonogashira Coupling in the Synthesis of Ynones: A Study of “Boomerang” Phenomena
Superbases in Confined Space: Control of the Basicity and Reactivity of the Proton Transfer
Palladium complexes grafted onto mesoporous silica catalysed the double carbonylation of aryl iodides with amines to give α-ketoamides