Area of research
Organic Chemistry · Molecular Biology
Research interest
Research interests include Catalytic C–H Functionalization Methods, Radical Photochemical Reactions, Catalytic Cross-Coupling Reactions, and Chemical Synthesis and Analysis.
Stereodivergent, Kinetically Controlled Isomerization of Terminal Alkenes via Nickel Catalysis
Novel N(SCF <sub>3</sub> )(CF <sub>3</sub> )-amines: synthesis, scalability and stability
Electrochemically Driven Nickel‐Catalyzed Halogenation of Unsaturated Halide and Triflate Derivatives
Cobalt-electrocatalytic HAT for functionalization of unsaturated C–C bonds
Nickel-Catalyzed Electro-Reductive Cross-Coupling of Aliphatic <i>N</i> -Acyl Imides with Alkyl Halides as a Strategy for Dialkyl Ketone Synthesis: Scope and Mechanistic Investigations
Mn-Mediated α-Radical Addition of Carbonyls to Olefins: Systematic Study, Scope, and Electrocatalysis
High-Throughput Electrochemistry: State of the Art, Challenges, and Perspective
Tailoring the Reactivity of the Langlois Reagent and Styrenes with Cyanoarenes Organophotocatalysts under Visible‐Light
From Bench to Plant: An Opportunity for Transition Metal Paired Electrocatalysis
Electroreductive Olefin–Ketone Coupling
Electroreductive Olefin-Ketone Coupling
Electrochemically Driven, Ni-Catalyzed Aryl Amination: Scope, Mechanism, and Applications
Expanding Reactivity in DNA-Encoded Library Synthesis via Reversible Binding of DNA to an Inert Quaternary Ammonium Support
Modular, stereocontrolled C <sub>β</sub> –H/C <sub>α</sub> –C activation of alkyl carboxylic acids
Synthesis of Strained γ‐Lactams by Palladium(0)‐Catalyzed C(sp<sup>3</sup>)−H Alkenylation and Application to Alkaloid Synthesis
Synthesis of Strained γ‐Lactams by Palladium(0)‐Catalyzed C(sp<sup>3</sup>)−H Alkenylation and Application to Alkaloid Synthesis