Area of research
Materials Chemistry · Process Chemistry and Technology
Research interest
Research interests include Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, Carbon dioxide utilization in catalysis, and Crystallography and molecular interactions.
Sensitized and Self-Sensitized Photocatalytic CO<sub>2</sub> Reduction to HCO<sub>2</sub><sup>–</sup> and CO under Visible Light with Ni(II) CNC-Pincer Catalysts
Cobalt(I) Pincer Complexes as Catalysts for CO <sub>2</sub> Hydrogenation to Formate
Lightweight Oriented Detector for Insulators in Drone Aerial Images
Bioinspired Herbicides–Ionic Liquids or Liquid Cocrystals?
Secondary Sphere Lewis Acid Activated Heme Superoxo Adducts Mimic Crucial Non‐Covalent Interactions in IDO/TDO Heme Dioxygenases
Chelating and Pincer Oxime Complexes of Palladium: Rearrangement of a 1,3-Diacylbenzene Dioxime upon Palladium Coordination
Nickel(II) Complexes Bearing Electron Donating OR/OH Groups on a Tetradentate Ligand Scaffold for Photocatalytic Carbon Dioxide Reduction
Cobalt(I) Pincer Complexes as Catalysts for CO2Hydrogenation to Formate
Detection of the BICT State in a Borafluorene with High Stokes Shift Fluorescence
Cobalt(I) Pincer Complexes as Catalysts for CO2Hydrogenation to Formate
Synthesis, Characterization, and Catalytic CO2 Reduction Reactivity of Ruthenium CNC Pincer Complexes Containing Macrocyclic or Long Chain Wingtips
Nickel (II) Tetradentate Complexes Bearing NHC-Pyridyl Derived Ligands for Photocatalytic Carbon Dioxide Reduction
Peptide-mediated targeted delivery of SOX9 nanoparticles into astrocytes ameliorates ischemic brain injury
Ruthenium (II) Complexes of CNC Pincers and Bipyridine in the Photocatalytic CO<sub>2</sub> Reduction Reaction to CO Using Visible Light: Catalysis, Kinetics, and Computational Insights
Practical and Scalable Two-Step Process for 6-(2-Fluoro-4-nitrophenyl)-2-oxa-6-azaspiro[3.3]heptane: A Key Intermediate of the Potent Antibiotic Drug Candidate TBI-223
Modular synthesis of unsymmetric 1,3-diphosphinopropanes through sequential substitution reactions
Ruthenium Complexes with Protic Ligands: Influence of the Position of OH Groups and π Expansion on Luminescence and Photocytotoxicity
Trapping an Unexpected/Unprecedented Hexanuclear Ce(III) Hydrolysis Product with Neutral 4‐Amino‐1,2,4‐triazole
Low-Valent Cobalt(I) CNC Pincer Complexes as Catalysts for Light-Driven Carbon Dioxide Reduction
Amines as Activating Ligands for Phosphine Palladium(II) Precatalysts: Effect of Amine Ligand Identity on the Catalyst Efficiency
Sensitized and Self‐Sensitized Photocatalytic Carbon Dioxide Reduction Under Visible Light with Ruthenium Catalysts Shows Enhancements with More Conjugated Pincer Ligands
Ruthenium pincer complexes for light activated toxicity: Lipophilic groups enhance toxicity
Accessing Lanthanide Tricyanomethanide Coordination Polymers Using Ionic Liquids
CO<sub>2</sub> capture from ambient air <i>via</i> crystallization with tetraalkylammonium hydroxides
Singlet Oxygen Formation vs Photodissociation for Light-Responsive Protic Ruthenium Anticancer Compounds: The Oxygenated Substituent Determines Which Pathway Dominates
Light‐responsive and Protic Ruthenium Compounds Bearing Bathophenanthroline and Dihydroxybipyridine Ligands Achieve Nanomolar Toxicity towards Breast Cancer Cells<sup>†</sup>
Supramolecular lead(<scp>ii</scp>) architectures engineered by tetrel bonds
Determining the Catalyst Properties That Lead to High Activity and Selectivity for Catalytic Hydrodeoxygenation with Ruthenium Pincer Complexes
Conversion of Quinine Derivatives into Biologically Active Ionic Liquids: Advantages, Multifunctionality, and Perspectives
Structure Function Relationships in Ruthenium Carbon Dioxide Reduction Catalysts with CNC Pincers Containing Donor Groups