Area of research
Materials Chemistry · Inorganic Chemistry
Research interest
Research interests include Chemistry, Redox, Ligand (biochemistry), Superoxide, Transient receptor potential channel, and Porphyrin.
An Fe(<scp>ii</scp>) complex detects hydrogen peroxide with <sup>1</sup>H and <sup>19</sup>F magnetic resonance imaging responses
Computational Analysis of the Superoxide Dismutase Mimicry Exhibited by a Zinc(II) Complex with a Redox-Active Organic Ligand
A macrocyclic quinol-containing ligand enables high catalase activity even with a redox-inactive metal at the expense of the ability to mimic superoxide dismutase
Diquinol Functionality Boosts the Superoxide Dismutase Mimicry of a Zn(II) Complex with a Redox-Active Ligand while Maintaining Catalyst Stability and Enhanced Activity in Phosphate Solution
Quinol-containing ligands enable high superoxide dismutase activity by modulating coordination number, charge, oxidation states and stability of manganese complexes throughout redox cycling
A Macrocyclic Ligand Framework That Improves Both the Stability and <i>T</i><sub>1</sub>-Weighted MRI Response of Quinol-Containing H<sub>2</sub>O<sub>2</sub> Sensors
Selective Persulfide Detection Reveals Evolutionarily Conserved Antiaging Effects of S-Sulfhydration
Selectivity of tungsten mediated dinitrogen splitting <i>vs.</i> proton reduction
Superoxide dismutase activity enabled by a redox-active ligand rather than metal
Cellular Fates of Manganese(II) Pentaazamacrocyclic Superoxide Dismutase (SOD) Mimetics: Fluorescently Labeled MnSOD Mimetics, X-ray Absorption Spectroscopy, and X-ray Fluorescence Microscopy Studies
Switching between Inner- and Outer-Sphere PCET Mechanisms of Small-Molecule Activation: Superoxide Dismutation and Oxygen/Superoxide Reduction Reactivity Deriving from the Same Manganese Complex
Adding a Second Quinol to a Redox-Responsive MRI Contrast Agent Improves Its Relaxivity Response to H<sub>2</sub>O<sub>2</sub>
A Self-Assembled Molecular Cage for Substrate-Selective Epoxidation Reactions in Aqueous Media
Ligands with Two Different Binding Sites and O<sub>2</sub> Reactivity of their Copper(I) Complexes
Characterization of Porphyrin-Co(III)-‘Nitrene Radical’ Species Relevant in Catalytic Nitrene Transfer Reactions
H2S and NO cooperatively regulate vascular tone by activating a neuroendocrine HNO–TRPA1–CGRP signalling pathway
Chemical Characterization of the Smallest <i>S</i> -Nitrosothiol, HSNO; Cellular Cross-talk of H <sub>2</sub> S and <i>S</i> -Nitrosothiols
Methylglyoxal Activates Nociceptors through Transient Receptor Potential Channel A1 (TRPA1)