Area of research
Organic Chemistry · Materials Chemistry
Research interest
Research interests include Chemistry, Catalysis, Aryl, Photochemistry, Electrophile, and Combinatorial chemistry.
Chemospecific cobalt-catalyzed hydroboration of CO<sub>2</sub>
Fluorescent and Chemiluminescent Dyes with Aryl Phthalimide and Aryl Luminol Chromophores
Cobalt-catalyzed double hydroboration of pyridines
Counterion Effect in Cobaltate‐Catalyzed Alkene Hydrogenation
Counterion Effect in Cobaltate‐Catalyzed Alkene Hydrogenation
BIAN‐Aluminium‐Catalysed Imine Hydrogenation
Next generation luminol derivative as powerful benchmark probe for chemiluminescence assays
Stereoselective Chromium‐Catalyzed Semi‐Hydrogenation of Alkynes
Heterogeneous Olefin Hydrogenation Enabled by a Highly‐Reduced Nickel(−II) Catalyst Precursor
An entirely solvent-free photooxygenation of olefins under continuous flow conditions
Heterogeneous Olefin Hydrogenation Enabled by a Highly‐Reduced Nickel(−II) Catalyst Precursor
Front Cover: Heterogeneous Olefin Hydrogenation Enabled by a Highly‐Reduced Nickel(−II) Catalyst Precursor (Chem. Eur. J. 28/2020)
Cobalt-Catalyzed Hydrogenations via Olefin Cobaltate and Hydride Intermediates
Stereoselective Alkyne Hydrogenation by using a Simple Iron Catalyst
Visible light-mediated photo-oxygenation of arylcyclohexenes
Stereoselective cobalt-catalyzed halofluoroalkylation of alkynes
Amine‐Borane Dehydrogenation and Transfer Hydrogenation Catalyzed by α‐Diimine Cobaltates
Aromatic substitutions of arenediazonium salts <i>via</i> metal catalysis, single electron transfer, and weak base mediation
Stereoselective Photooxidations by the Schenck Ene Reaction
A Manganese Nanosheet: New Cluster Topology and Catalysis
Recyclable cobalt(0) nanoparticle catalysts for hydrogenations
Olefin‐Stabilized Cobalt Nanoparticles for C=C, C=O, and C=N Hydrogenations
A Manganese Nanosheet: New Cluster Topology and Catalysis
<scp>C</scp> <scp>C</scp> Hydrogenations with Iron Group Metal Catalysts
Cover Feature: Amine‐Borane Dehydrogenation and Transfer Hydrogenation Catalyzed by α‐Diimine Cobaltates (Chem. Eur. J. 1/2019)
Frontispiz: Elektrochemilumineszenz‐Bioassays können Fluoreszenzassays mithilfe eines wasserlöslichen Luminolderivats übertreffen
Frontispiece: Electrochemiluminescence Bioassays with a Water‐Soluble Luminol Derivative Can Outperform Fluorescence Assays
Dichromatic Photocatalytic Substitutions of Aryl Halides with a Small Organic Dye
Electrochemiluminescence Bioassays with a Water‐Soluble Luminol Derivative Can Outperform Fluorescence Assays
Alkene Hydrogenations by Soluble Iron Nanocluster Catalysts