Area of research
Cancer Research · Genetics
Research interest
Research focused on Ethylene and Enthalpy, with related work in Glycolysis, Polymerization, Endothermic process. Notable publications include 'Microwave-Specific Enhancement of the Carbon–Carbon Dioxide (Boudouard) Reaction', 'Targeting Glycolysis through Inhibition of Lactate Dehydrogenase Impairs Tumor Growth in Preclinical Models of Ewing Sarcoma', and 'Mechanism of Initiation in the Phillips Ethylene Polymerization Catalyst: Redox Processes Leading to the Active Site'.
IDH1 Mutations Induce Organelle Defects Via Dysregulated Phospholipids
Targeting Glycolysis through Inhibition of Lactate Dehydrogenase Impairs Tumor Growth in Preclinical Models of Ewing Sarcoma
Mechanism of Initiation in the Phillips Ethylene Polymerization Catalyst: Ethylene Activation by Cr(II) and the Structure of the Resulting Active Site
Synthesis, characterization, and electrospinning of novel polyaniline–peptide polymers
Mechanism of Initiation in the Phillips Ethylene Polymerization Catalyst: Redox Processes Leading to the Active Site
Microwave-Specific Effects on the Equilibrium Constants and Thermodynamics of the Steam–Carbon and Related Reactions
A synergistic approach to light-free catalysis using zinc oxide embedded multi-walled carbon nanotube paper
Microwave-Specific Enhancement of the Carbon–Carbon Dioxide (Boudouard) Reaction
Ultrathin tunable ion conducting nanomembranes for encapsulation of sulfur cathodes
Reaction of Methane with Bulk Intermetallics Containing Iron Clusters Yields Carbon Nanotubes
ChemInform Abstract: Ca<sub>11</sub>E<sub>3</sub>C<sub>8</sub> (E: Sn, Pb): New Complex Carbide Zintl Phases Grown from Ca/Li Flux.
Ca<sub>11</sub>E<sub>3</sub>C<sub>8</sub> (E = Sn, Pb): New Complex Carbide Zintl Phases Grown from Ca/Li Flux
Metal Site-Mediated, Thermally Induced Structural Changes in Cr<sup>6+</sup>-Silicalite-2 (MEL) Molecular Sieves