Area of research
Materials Chemistry · Oncology
Research interest
Research interests include Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, Metal complexes synthesis and properties, and Metal-Catalyzed Oxygenation Mechanisms.
Experimental and Computational Study of the Structure, Steric Properties, and Binding Equilibria of Neopentylphosphine Palladium Complexes
Synthesis, Structural Characterization, and Coordination Chemistry of (Trineopentylphosphine)palladium(aryl)bromide Dimer Complexes ([(Np<sub>3</sub>P)Pd(Ar)Br]<sub>2</sub>)
Boranes with Ultra-High Stokes Shift Fluorescence
Air-Stable [(R<sub>3</sub>P)PdCl<sub>2</sub>]<sub>2</sub>Complexes of Neopentylphosphines as Cross-Coupling Precatalysts: Catalytic Application and Mechanism of Catalyst Activation and Deactivation
Cu(II) Propionyl-Thiazole Thiosemicarbazone Complexes: Crystal Structure, Inhibition of Human Topoisomerase IIα, and Activity against Breast Cancer Cells
Iridium and Ruthenium Complexes of <i>N</i>-Heterocyclic Carbene- and Pyridinol-Derived Chelates as Catalysts for Aqueous Carbon Dioxide Hydrogenation and Formic Acid Dehydrogenation: The Role of the Alkali Metal
Ruthenium Complexes are pH-Activated Metallo Prodrugs (pHAMPs) with Light-Triggered Selective Toxicity Toward Cancer Cells
Ruthenium(<scp>ii</scp>) complexes of pyridinol and N-heterocyclic carbene derived pincers as robust catalysts for selective carbon dioxide reduction
Mechanistic Study of the Role of Substrate Steric Effects and Aniline Inhibition on the Bis(trineopentylphosphine)palladium(0)-Catalyzed Arylation of Aniline Derivatives
Ruthenium (II) and iridium (III) complexes of N-heterocyclic carbene and pyridinol derived bidentate chelates: Synthesis, characterization, and reactivity
Substituent Effects on the Properties of Borafluorenes
A Trialkylphosphine-Derived Palladacycle as a Catalyst in the Selective Cross-Dimerization of Terminal Arylacetylenes with Terminal Propargyl Alcohols and Amides
Synthesis of 9,10‐Dimethyl‐2,3,6,7‐Anthracenetetra(thioacetate) and Benzenepentathiol; Improved Syntheses of 1,2,4,5‐Benzenetetra(thioacetate) and Benzenehexathiol
Crystal structure of (perchlorato-κ<i>O</i>)(1,4,7,10-tetraazacyclododecane-κ<sup>4</sup><i>N</i>)copper(II) perchlorate
Crystal structure of 4′-bromo-2′,5′-dimethoxy-2,5-dioxo-[1,1′-biphenyl]-3,4-dicarbonitrile [BrHBQ(CN)<sub>2</sub>] benzene hemisolvate
Crystal structures of bis- and hexakis[(6,6′-dihydroxybipyridine)copper(II)] nitrate coordination complexes
Studies of the Pathways Open to Copper Water Oxidation Catalysts Containing Proximal Hydroxy Groups During Basic Electrocatalysis