Area of research
Materials Chemistry · Organic Chemistry
Research interest
Research interests include Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, Catalytic Cross-Coupling Reactions, and Catalytic Processes in Materials Science.
Boosting the catalytic activity of Cu2O via forming composite with both Cu and metal oxides MO2 (M = Mo and W) by tuning its band structure and Lewis acidity
The superiority of cuprous chloride to iodide in the selective aerobic oxidation of benzylic alcohols at ambient temperature
A green approach for aerobic oxidation of benzylic alcohols catalysed by Cu<sup>I</sup>–Y zeolite/TEMPO in ethanol without additional additives
Magnetic core–shell Fe<sub>3</sub>O<sub>4</sub>@Cu<sub>2</sub>O and Fe<sub>3</sub>O<sub>4</sub>@Cu<sub>2</sub>O–Cu materials as catalysts for aerobic oxidation of benzylic alcohols assisted by TEMPO and <i>N</i>-methylimidazole
Engineering the surface of cuprous oxide via surface coordination for efficient catalysis on aerobic oxidation of benzylic alcohols under ambient conditions
Beckmann rearrangement of ketoximes promoted by cyanuric chloride and dimethyl sulfoxide under a mild condition
Highly Charged, Cytotoxic, Cyclometalated Iridium(III) Complexes as Cancer Stem Cell Mitochondriotropics
A Copper(II) Phenanthroline Metallopeptide That Targets and Disrupts Mitochondrial Function in Breast Cancer Stem Cells
Cancer Stem Cell and Bulk Cancer Cell Active Copper(II) Complexes with Vanillin Schiff Base Derivatives and Naproxen
Induction of Necroptosis in Cancer Stem Cells using a Nickel(II)‐Dithiocarbamate Phenanthroline Complex
The breast cancer stem cell potency of copper(<scp>ii</scp>) complexes bearing nonsteroidal anti-inflammatory drugs and their encapsulation using polymeric nanoparticles
The Potent Inhibitory Effect of a Naproxen‐Appended Cobalt(III)‐Cyclam Complex on Cancer Stem Cells