Area of research
Materials Chemistry · Inorganic Chemistry
Research interest
Research interests include Chemistry, Corrole, Porphyrin, Cyclic voltammetry, Materials science, and Cobalt.
In situ construction MoS2-Pt nanosheets on 3D MOF-derived S, N-doped carbon substrate for highly efficient alkaline hydrogen evolution reaction
Preparation of a renewable biomass carbon aerogel reinforced with sisal for oil spillage clean-up: Inspired by green leaves to green Tofu
Recyclable biomass carbon@SiO2@MnO2 aerogel with hierarchical structures for fast and selective oil-water separation
Superhydrophobic Hierarchical Biomass Carbon Aerogel Assembled with TiO<sub>2</sub> Nanorods for Selective Immiscible Oil/Water Mixture and Emulsion Separation
A novel hierarchical hollow SiO2@MnO2 cubes reinforced elastic polyurethane foam for the highly efficient removal of oil from water
Cobalt Tetrabutano- and Tetrabenzotetraarylporphyrin Complexes: Effect of Substituents on the Electrochemical Properties and Catalytic Activity of Oxygen Reduction Reactions
Functionalized Cobalt Triarylcorrole Covalently Bonded with Graphene Oxide: A Selective Catalyst for the Two- or Four-Electron Reduction of Oxygen
Dysprosium Heteroleptic Corrole-Phthalocyanine Triple-Decker Complexes: Synthesis, Crystal Structure, and Electrochemical and Magnetic Properties
Electrochemistry of Corroles in Nonaqueous Media
Macrocyclic Transformations from Norrole to Isonorrole and an N‐Confused Corrole with a Fused Hexacyclic Ring System Triggered by a Pyrrole Substituent
Self-assembled organic nanostructures and nonlinear optical properties of heteroleptic corrole–phthalocyanine europium triple-decker complexes
Synthesis of a Neo-Confused Octaphyrin and the Formation of Its Mononuclear Complexes
Synthesis and Characterization of Palladium(II) Complexes of <i>meso</i>-Substituted [14]Tribenzotriphyrin(2.1.1)
Electrochemistry and Catalytic Properties for Dioxygen Reduction Using Ferrocene-Substituted Cobalt Porphyrins
Cobalt triarylcorroles containing one, two or three nitro groups. Effect of NO2 substitution on electrochemical properties and catalytic activity for reduction of molecular oxygen in acid media
Neo‐Fused Hexaphyrin: A Molecular Puzzle Containing an N‐Linked Pentaphyrin
Synthesis and electrochemistry of β-pyrrole nitro-substituted cobalt(<scp>ii</scp>) porphyrins. The effect of the NO<sub>2</sub> group on redox potentials, the electron transfer mechanism and catalytic reduction of molecular oxygen in acidic media
A new class of rare earth tetrapyrrole sandwich complexes containing corrole and phthalocyanine macrocycles: synthesis, physicochemical characterization and X-ray analysis
Synthesis, Characterization, and Electrochemistry of the Manganese(I) Complexes of <i>meso</i>‐Substituted [14]Tribenzotriphyrins(2.1.1)
<i>Meso</i>-dichlorophenyl substituted<font>Co</font>(<font>III</font>) corrole: A selective electrocatalyst for the two-electron reduction of dioxygen in acid media, X-ray crystal structure analysis and electrochemistry
Planar and Nonplanar Free‐Base Tetraarylporphyrins: β‐Pyrrole Substituents and Geometric Effects on Electrochemistry, Spectroelectrochemistry, and Protonation/Deprotonation Reactions in Nonaqueous Media
β-Nitro-substituted free-base, iron(III) and manganese(III) tetraarylporphyrins: synthesis, electrochemistry and effect of the<font>NO</font><sub>2</sub>substituent on spectra and redox potentials in non-aqueous media
Gold(III) Porphyrins Containing Two, Three, or Four β,β′-Fused Quinoxalines. Synthesis, Electrochemistry, and Effect of Structure and Acidity on Electroreduction Mechanism
Molecular Oxygen Reduction Electrocatalyzed by <i>meso</i>-Substituted Cobalt Corroles Coated on Edge-Plane Pyrolytic Graphite Electrodes in Acidic Media
Electrochemistry of Platinum(II) Porphyrins: Effect of Substituents and π-Extension on Redox Potentials and Site of Electron Transfer