Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Porphyrin and Phthalocyanine Chemistry, Magnetism in coordination complexes, Metal complexes synthesis and properties, and Photosynthetic Processes and Mechanisms.
Systemic HER3 ligand-mimicking nanobioparticles enter the brain and reduce intracranial tumour growth
Temperature Dependence of Charge and Spin Transfer in Azurin
A Super-Oxidized Radical Cationic Icosahedral Boron Cluster
Addressing the challenge of carbon-free energy
Visible-Light-Induced Olefin Activation Using 3D Aromatic Boron-Rich Cluster Photooxidants
Inner- and outer-sphere metal coordination in blue copper proteins
Photoexcitation of tumor-targeted corroles induces singlet oxygen-mediated augmentation of cytotoxicity
Mechanisms of Enzymatic Copper-Oxygen Chemistry
Metal-Arylisocyanide Chromophores for Photoredox Chemistry and Imaging
POWERING THE PLANET: A Chemical Bonding Center in the Direct Conversion of Sunlight into Chemical Fuel
POWERING THE PLANET: A Chemical Bonding Center for the Direct Conversion of Sunlight into Chemical Fuel
Donor-Acceptor Electronic Coupling at Long and Short Range
Probing Metalloenzymes with Sensitizer-Linked Substrates
Long-Range Inorganic Electron Transfer: Tunneling through Covalent Bridges and Solvents
Probing Metalloenzymes with Sensitizer-Tethered Substrates
Long-Range Electron Transfer in Binuclear Metal Complexes: Testing the Role of Tunneling Energy
Oxygen Activation in Engineered Heme Proteins
Metal-Ligand Electron-Transfer Complexes: Experimental Investigations of the Limits of Semiclassical Electron- Transfer Theory
Structurally Engineered Photoredox Enzymes
Electron Transfer in Structurally Engineered Metalloproteins
Photochemistry of Metal Complexes
Metalloprotein Electron Transfer Mechanisms
The Use of Site-Directed Mutagenesis and the Ruthenium Modification Method for Study of Electron-Transfer Mechanisms in Metalloenzymes
Metalloprotein Electron Transfer Mechanisms
Photochemistry of Metal Clusters
The Use of Site-Directed Mutagenesis and the Ruthenium Modification Method
Purchase of Ft/NMR Instrumentation (Chemistry)
Metalloprotein Electron Transfer Mechanisms (Chemistry)
Purchase of an X-Ray Diffractometer (Chemistry)
Purchase of an Array Processor (Chemistry)
Purchase of a Fourier Transform Infrared Spectrometer (Chemistry)