Area of research
Materials Chemistry · Organic Chemistry
Research interest
Research interests include Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, Organometallic Complex Synthesis and Catalysis, and Asymmetric Hydrogenation and Catalysis.
Nitric oxide inhibits ten-eleven translocation DNA demethylases to regulate 5mC and 5hmC across the genome
Carbon–Hydrogen Bond Activation, C–N Bond Coupling, and Cycloaddition Reactivity of a Three-Coordinate Nickel Complex Featuring a Terminal Imido Ligand
Reductive functionalization of a rhodium(iii)–methyl bond by electronic modification of the supporting ligand
Single-electron oxidation of N-heterocyclic carbene-supported nickel amides yielding benzylic C–H activation
MRI: Acquisition of a High Performance Hybrid Computer Cluster for Computational Modeling
Fundamental Acid/Base Properties of Hydrocarbon Carbon-Hydrogen (C-H) Bonds and Metal-Element Active Sites
MRI: Acquisition of a Computer Cluster for the Computational Chemistry Program at the University of North Texas
Earth-abundant Metal Catalysts for the Functionalization of Strong Carbon-Hydrogen Bonds
Modeling of Catalytic Bond Functionalization by Base and Noble Metal Catalysts
Structure and Reactivity of Low Coordination Transition Metal Complexes
Computational Studies of Inorganic and Organometallic Complexes and Catalysts
U.S.-Romanian Research on Soft Computing Approaches to Modeling Metal Chemistry for Catalysis Applications
US-India Cooperative Research: Novel Approaches to Quantum Modeling of Chemical Systems
US-India Cooperative Research: Novel Approaches to Quantum Modeling of Chemical Systems
Computational Studies of Inorganic and Organometallic Complexes and Catalysts
Research Experiences for Undergraduates in Chemistry at the University of Memphis
U.S.-Romanian Research on Soft Computing Approaches to Modeling Metal Chemistry for Catalysis Applications
U.S.-United Kingdom Cooperative Research: Theory-Experiment Study of Transition Metal/C-H Bond Interactions
Computational Studies of Transition Metal Bonding and Reactivity
Renovation of J. M. Smith Chemistry Building at the University of Memphis
Towards Computer-Aided Catalyst Design: Five Effective Core Potential Studies of C-H Activation