Area of research
Materials Chemistry · Inorganic Chemistry
Research interest
Research interests include Porphyrin and Phthalocyanine Chemistry, Metal-Catalyzed Oxygenation Mechanisms, Oxidative Organic Chemistry Reactions, and Photosynthetic Processes and Mechanisms.
From mononuclear iron phthalocyanines in catalysis to μ-nitrido diiron complexes and beyond
Selective carbene transfer to amines and olefins catalyzed by ruthenium phthalocyanine complexes with donor substituents
Recent progress on exploring µ-oxo bridged binuclear porphyrinoid complexes in catalysis and material science
Mechanism of Oxidative Activation of Fluorinated Aromatic Compounds by N‐Bridged Diiron‐Phthalocyanine: What Determines the Reactivity?
Bioinspired Oxidation of Methane in the Confined Spaces of Molecular Cages
Comparative Study of the Electronic Structures of μ-Oxo, μ-Nitrido, and μ-Carbido Diiron Octapropylporphyrazine Complexes and Their Catalytic Activity in Cyclopropanation of Olefins
Exploring the Optimal Synthetic Pathways towards µ‐Carbido Diruthenium(IV) Bisphthalocyaninates
Unexpected formation of a μ-carbido diruthenium(<scp>iv</scp>) complex during the metalation of phthalocyanine with Ru<sub>3</sub>(CO)<sub>12</sub> and its catalytic activity in carbene transfer reactions
μ-Nitrido Diiron Phthalocyanine and Porphyrin Complexes: Unusual Structures With Interesting Catalytic Properties
μ-Nitrido Diiron Macrocyclic Platform: Particular Structure for Particular Catalysis
Origin of the Enhanced Reactivity of μ-Nitrido-Bridged Diiron(IV)-Oxo Porphyrinoid Complexes over Cytochrome P450 Compound I
Oxidation of aliphatic and aromatic C H bonds by t-BuOOH catalyzed by μ-nitrido diiron phthalocyanine
Site-selective formation of an iron(<scp>iv</scp>)–oxo species at the more electron-rich iron atom of heteroleptic μ-nitrido diiron phthalocyanines
Mild oxidation of ethane to acetic acid by H2O2 catalyzed by supported μ-nitrido diiron phthalocyanines
Hydrocarbon oxidation over Fe- and Cr-containing metal-organic frameworks MIL-100 and MIL-101–a comparative study
Catalytic Defluorination of Perfluorinated Aromatics under Oxidative Conditions Using N-Bridged Diiron Phthalocyanine
Synthesis and characterization of μ-nitrido, μ-carbido and μ-oxo dimers of iron octapropylporphyrazine
X-ray Absorption and Emission Spectroscopies of X-Bridged Diiron Phthalocyanine Complexes (FePc)<sub>2</sub>X (X = C, N, O) Combined with DFT Study of (FePc)<sub>2</sub>X and Their High-Valent Diiron Oxo Complexes
Degradation of chlorinated phenols in water in the presence of H2O2 and water-soluble μ-nitrido diiron phthalocyanine
Phthalocyanine Metal Complexes in Catalysis
Oxidation of cycloalkanes by H2O2 using a copper–hemicryptophane complex as a catalyst
Efficient epoxidation of olefins by H2O2 catalyzed by iron “helmet” phthalocyanines
Allylic oxdation of alkenes with molecular oxygen catalyzed by porous coordination polymers Fe-MIL-101 and Cr-MIL-101
An N-bridged high-valent diiron–oxo species on a porphyrin platform that can oxidize methane
Hydroxylation of Aromatics with the Help of a Non‐Haem FeOOH: A Mechanistic Study under Single‐Turnover and Catalytic Conditions
Generation and characterization of high-valent iron oxo phthalocyanines