Area of research
Oncology · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Carbyne and Porosity, with related work in Ruthenium, Palladium, Bimetallic strip. Notable publications include 'Mechanism of Action and Clinical Attributes of Auryxia® (Ferric Citrate)', 'Ferric Ammonium Citrate – What's in It?', and 'Formation of Carbon–Carbon Triply Bonded Molecules from Two Free Carbyne Radicals via a Conical Intersection'.
Novel Methods for the Formation of Free Carbyne Radicals in Solution
Nano-porous ruthenium-palladium and ruthenium-platinum alloys and their application as hydrogenation catalysts
Catalytically active nano-porous cobalt-palladium alloys
Preparation, structural characterization and cytotoxicity of hydrolytically stable Ti(IV) citrate complexes
Mechanism of Action and Clinical Attributes of Auryxia® (Ferric Citrate)
Fusion of ferric citrate and zirconium hexafluoride: Synthesis, structure and magnetic properties of [Fe6O2Zr2F6(cit)4(H2O)10]
Ferric Ammonium Citrate – What's in It?
Fractal structures of highly-porous metals and alloys at the nanoscale
Synthesis and characterization of nitrogen rich ruthenium complexes
Formation of an alkyne during degradation of metal–alkylidyne complexes
Formation of Carbon–Carbon Triply Bonded Molecules from Two Free Carbyne Radicals via a Conical Intersection
Anhydrous chromous acetate revisited – A very simple synthetic route
Metal Ions Do Not Play a Direct Role in the Formation of Carbon–Carbon Triple Bonds during Reduction of Trihaloalkyls by Cr<sup>II</sup> or V<sup>II</sup>