Area of research
Materials Chemistry · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Chemistry, Catalysis, Sulfur, Cobalt, Ligand (biochemistry), and Overpotential.
Mechanistic Promiscuity in Cobalt‐Mediated CO <sub>2</sub> Reduction Reaction: One‐ Versus Two‐Electron Reduction Process
Oxygen sensitivity of [FeFe]-hydrogenase: a comparative study of active site mimics inside <i>vs.</i> outside the enzyme
Ligand Non-Innocence and Proton Channel Promote Cobalt-Catalyzed Electrochemical CO2 Reduction with Predominant CO Selectivity
A Cu<sup>I</sup>Co<sup>II</sup> cryptate for the visible light-driven reduction of CO<sub>2</sub>
Evidence of Sulfur Non‐Innocence in [Co<sup>II</sup>(dithiacyclam)]<sup>2+</sup>‐Mediated Catalytic Oxygen Reduction Reactions
A bioinspired oxoiron(<scp>iv</scp>) motif supported on a N<sub>2</sub>S<sub>2</sub> macrocyclic ligand
Electrochemical CO<sub>2</sub> Reduction — The Effect of Chalcogenide Exchange in Ni-Isocyclam Complexes
Sulfur substitution in a Ni(cyclam) derivative results in lower overpotential for CO<sub>2</sub> reduction and enhanced proton reduction
Mobile zinc increases rapidly in the retina after optic nerve injury and regulates ganglion cell survival and optic nerve regeneration
Modulation of extrasynaptic NMDA receptors by synaptic and tonic zinc
Detection of Nitric Oxide and Nitroxyl with Benzoresorufin-Based Fluorescent Sensors
{1,1′‐(Dimethylsilylene)bis[methanechalcogenolato]}diiron Complexes [2Fe2E(Si)] (E=S, Se, Te) – [FeFe] Hydrogenase Models