Area of research
Organic Chemistry · Physical and Theoretical Chemistry
Research interest
Research interests include Chemistry, Combinatorial chemistry, Catalysis, Domino, Cascade, and Trifluoromethyl.
Design, Synthesis, and Antifungal Activity Evaluation of Novel Hydrazide-Containing <i>L</i>-Perillaldehyde Derivatives as Potential Fungicides
Novel β-Ionone Derivatives Containing Isoxazole Hydrazide Moiety: Design, Synthesis, Antifungal Activity, and Action Mechanism
Development of actein derivatives as potent anti-triple negative breast cancer agents
Photoredox Catalyzed Trifluoromethyl Radical‐Triggered Trifunctionalization of 5‐Hexenenitriles <i>via</i> Cyano Migration
Large-scale sensitivity adjustment for Gd-HMME room temperature phosphorescence oxygen sensing
Brønsted acid-promoted hydroamination of unsaturated hydrazones: access to biologically important 5-arylpyrazolines
Visible‐Light Photoredox‐Catalyzed Tandem Trifluoro‐methylation/Cyclization/Remote Oxidation of 1,6‐Dienes: Access to CF<sub>3</sub>‐Containing Five‐Membered Heterocycles
Access to cyano-substituted pyrazolines through copper-catalyzed cascade cyanation/cyclization of unactivated olefins
Kinetics process of room temperature phosphorescence and fluorescence of gadolinium porphyrin in aqueous solution
Copper‐Catalyzed Domino Cyclization/Thiocyanation of Unactivated Olefins: Access to SCN‐Containing Pyrazolines
Highly Selective and Switchable Access to Tetrasubstituted Alkenyl Sulfones and Naphthyl Sulfones: 1,4-Aryl Migration versus Cyclization
Synthesis and properties of chiral amide-bonded porphyrin dimers with various functional bridging blocks
Copper-Catalyzed Domino Cyclization/Trifluoromethylthiolation of Unactivated Alkenes: Access to SCF<sub>3</sub>-Containing Pyrrolines
Access to Cyano-Containing Isoxazolines via Copper-Catalyzed Domino Cyclization/Cyanation of Alkenyl Oximes