Area of research
Organic Chemistry · Materials Chemistry
Research interest
Research interests include Chemistry, Catalysis, Materials science, Tantalum, Metathesis, and Photocatalysis.
Methane dry reforming on supported cobalt nanoparticles promoted by boron
Extension of Surface Organometallic Chemistry to Metal–Organic Frameworks: Development of a Well-Defined Single Site [(≡Zr–O−)W(═O)(CH<sub>2</sub><sup><i>t</i></sup>Bu)<sub>3</sub>] Olefin Metathesis Catalyst
Catalytic consequences of ultrafine Pt clusters supported on SrTiO3 for photocatalytic overall water splitting
Predicting the DNP-SENS efficiency in reactive heterogeneous catalysts from hydrophilicity
The structure and binding mode of citrate in the stabilization of gold nanoparticles
Frozen Acrylamide Gels as Dynamic Nuclear Polarization Matrices
Single-Site VO<sub><i>x</i></sub> Moieties Generated on Silica by Surface Organometallic Chemistry: A Way To Enhance the Catalytic Activity in the Oxidative Dehydrogenation of Propane
Reactive surface organometallic complexes observed using dynamic nuclear polarization surface enhanced NMR spectroscopy
Well-Defined Molybdenum Oxo Alkyl Complex Supported on Silica by Surface Organometallic Chemistry: A Highly Active Olefin Metathesis Precatalyst
Atomic-level organization of vicinal acid–base pairs through the chemisorption of aniline and derivatives onto mesoporous SBA15
Dendritic Tip-on Polytriazine-Based Carbon Nitride Photocatalyst with High Hydrogen Evolution Activity
Cooperative Effect of Monopodal Silica-Supported Niobium Complex Pairs Enhancing Catalytic Cyclic Carbonate Production
VO<sub><i>x</i></sub>/SiO<sub>2</sub> Catalyst Prepared by Grafting VOCl<sub>3</sub> on Silica for Oxidative Dehydrogenation of Propane
Structured Ni catalysts on porous anodic alumina membranes for methane dry reforming: NiAl<sub>2</sub>O<sub>4</sub>formation and characterization
Sn surface-enriched Pt–Sn bimetallic nanoparticles as a selective and stable catalyst for propane dehydrogenation
Critical Role of the Semiconductor–Electrolyte Interface in Photocatalytic Performance for Water-Splitting Reactions Using Ta<sub>3</sub>N<sub>5</sub>Particles
Tuning the properties of visible-light-responsive tantalum (oxy)nitride photocatalysts by non-stoichiometric compositions: a first-principles viewpoint
Photocatalysis with Chromium‐Doped TiO<sub>2</sub>: Bulk and Surface Doping
Alkane Metathesis with the Tantalum Methylidene [(≡SiO)Ta(═CH<sub>2</sub>)Me<sub>2</sub>]/[(≡SiO)<sub>2</sub>Ta(═CH<sub>2</sub>)Me] Generated from Well-Defined Surface Organometallic Complex [(≡SiO)Ta<sup>V</sup>Me<sub>4</sub>]
Insights into the deactivation mechanism of supported tungsten hydride on alumina (W-H/Al2O3) catalyst for the direct conversion of ethylene to propylene
WMe<sub>6</sub> Tamed by Silica: ≡Si–O–WMe<sub>5</sub> as an Efficient, Well-Defined Species for Alkane Metathesis, Leading to the Observation of a Supported W–Methyl/Methylidyne Species
Study of ethylene/2-butene cross-metathesis over W-H/Al2O3 for propylene production: Effect of the temperature and reactant ratios on the productivity and deactivation
Bipodal Surface Organometallic Complexes with Surface N-Donor Ligands and Application to the Catalytic Cleavage of C–H and C–C Bonds in <i>n</i>-Butane
Metallacyclobutane Substitution and Its Effect on Alkene Metathesis for Propylene Production over W–H/Al<sub>2</sub>O<sub>3</sub>: Case of Isobutene/2-Butene Cross-Metathesis
[(SiO)Ta<sup>V</sup>Cl<sub>2</sub>Me<sub>2</sub>]: A Well‐Defined Silica‐Supported Tantalum(V) Surface Complex as Catalyst Precursor for the Selective Cocatalyst‐Free Trimerization of Ethylene
[(SiO)Ta<sup>V</sup>Cl<sub>2</sub>Me<sub>2</sub>]: A Well‐Defined Silica‐Supported Tantalum(V) Surface Complex as Catalyst Precursor for the Selective Cocatalyst‐Free Trimerization of Ethylene
Successive Heterolytic Cleavages of H<sub>2</sub>Achieve N<sub>2</sub>Splitting on Silica-Supported Tantalum Hydrides: A DFT Proposed Mechanism