Area of research
Materials Chemistry · Inorganic Chemistry
Research interest
Research interests include Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, Radioactive element chemistry and processing, and Lanthanide and Transition Metal Complexes.
Neptunyl Pyrrophen Complexes: Exploring Schiff Base Chemistry with Multidentate Acyclic Ligands and Transuranics
Tailoring Redox Active Ligands for Probing the Reactivity of Actinides
New up-conversion luminescence in molecular cyano-substituted naphthylsalophen lanthanide(<scp>iii</scp>) complexes
Comparing coordination uranyl(<scp>vi</scp>) complexes with 2-(1<i>H</i>-imidazo[4,5-<i>b</i>]phenazin-2-yl)phenol and derivatives
Steric control of mesocate and helicate formation: Bulky pyrrol-2-yl Schiff base complexes of Zn2+
Pyrrophens: Pyrrole-Based Hexadentate Ligands Tailor-Made for Uranyl (UO<sub>2</sub><sup>2+</sup>) Coordination and Molecular Recognition
Bonding Interactions in Uranyl α-Diimine Complexes: A Spectroscopic and Electrochemical Study of the Impacts of Ligand Electronics and Extended Conjugation
An example of enhanced emission of a pyridine containing schiff base zinc2+ complex
Oxidative Mannich Reactions of Tertiary Amines Using a Cu(II) 2-Quinoxalinol Salen Catalyst
Solid-state structural elucidation and electrochemical analysis of uranyl naphthylsalophen
Propargylic C H activation using a Cu(II) 2-quinoxalinol salen catalyst and tert -butyl hydroperoxide
Mononuclear Cu(II) and Ni(II) complexes of bis(naphthalen-2-ol) Schiff base ligands
Th(<scp>iv</scp>) and Ce(<scp>iv</scp>) napthylsalophen sandwich complexes: characterization of unusual thorium fluorescence in solution and solid-state
An example of unusual pyridine donor Schiff base uranyl (UO<sub>2</sub><sup>2+</sup>) complexes
Structural Characterization and Redox Activity of a Uranyl Dimer and Transition-Metal Complexes of a Tetradentate BIAN Ligand
Tunable ligand emission of napthylsalophen triple-decker dinuclear lanthanide(<scp>iii</scp>) sandwich complexes
Thorium coordination: A comprehensive review based on coordination number
Computational Study of Reduction Potentials of Th<sup>4+</sup> Compounds and Hydrolysis of ThO<sub>2</sub>(H<sub>2</sub>O)<sub><i>n</i></sub>, <i>n</i> = 1, 2, 4
Solid state π–π stacking and higher order dimensional crystal packing, reactivity, and electrochemical behaviour of salphenazine actinide and transition metal complexes
Characterization of Quinoxolinol Salen Ligands as Selective Ligands for Chemosensors for Uranium
Synthesis, structural characterization, electronic spectroscopy, and microfluidic detection of Cu<sup>+2</sup> and UO<sub>2</sub><sup>+2</sup> [di-<i>tert</i>-butyl-salphenazine] complexes
Actinide (Th4+ and UO22+) assisted oxidative coupling of ortho-phenylenediamine in the presence of oxygen
ChemInform Abstract: Cu(II) 2‐Quinoxalinol Salen Catalyzed Oxidation of Propargylic, Benzylic, and Allylic Alcohols Using tert‐Butyl Hydroperoxide in Aqueous Solutions.
2-Quinoxalinol diamine Cu(<scp>ii</scp>) complex: facilitating catalytic oxidation through dual mechanisms
Emission, Raman Spectroscopy, and Structural Characterization of Actinide Tetracyanometallates
Oxidation of Propargylic Alcohols with a 2‐Quinoxalinol Salen Copper(II) Complex and <i>tert</i>‐Butyl Hydroperoxide
ChemInform Abstract: Emission, Raman Spectroscopy, and Structural Characterization of Actinide Tetracyanometallates.
ChemInform Abstract: Oxidation of Propargylic Alcohols with a 2‐Quinoxalinol Salen Copper(II) Complex and tert‐Butyl Hydroperoxide.
Coordination Chemistry with f-Element Complexes for an Improved Understanding of Factors That Contribute to Extraction Selectivity
Allylic C–H Activations Using Cu(II) 2-Quinoxalinol Salen and <i>tert</i>-Butyl Hydroperoxide