Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Catalysis, Acetylene, Chemistry, Vinyl chloride, Materials science, and Zeolite.
Lithium Exposure Causes Trophoblast Cuproptosis by Upregulating FOXO1/STEAP4 Axis in Unexplained Miscarriage
Phenylcarbazole-stabilized palladium catalysts for efficient acetylene hydrochlorination
Hierarchical porous carbon from PVC plastic wastes with efficient catalytic performance for acetylene hydrochlorination
Pomegranate Peel Derived-Carbon for Highly Efficient Palladium-Based Catalysts for Acetylene Hydrochlorination
Oxygen vacancies rich flower-like CuO for conductometric triethylamine gas sensors
Ultrasonic Synthesis of Fluorene-Modified Pd/SAC Catalysts for Ultra-Stable Acetylene Hydrochlorination
Pd catalysts supported on P-doped carbon derived from cotton stalk for acetylene hydrochlorination
Pd Catalysts Supported on P-Doped Carbon Derived from Cotton Stalk for Acetylene Hydrochlorination
Enhanced Catalytic Performance of Palladium‐Based Catalysts Modified With the Dibenzofuran Ligand for Acetylene Hydrochlorination
Metal immobilized in a USY zeolite-supported (4-CB)TPPB: A new strategy of enhanced stability for acetylene hydrochlorination
Urea modified USY zeolite supported Cu-based catalyst for acetylene hydrochlorination
Halloysite nanotube-supported bismuth catalysts for acetylene hydrochlorination
Design of choline chloride modified USY zeolites for palladium-catalyzed acetylene hydrochlorination
Palladium-halloysite nanocomposites as an efficient heterogeneous catalyst for acetylene hydrochlorination
Non-mercury catalytic acetylene hydrochlorination over Bi/CNTs catalysts for vinyl chloride monomer production
Carbon nanotubes supported N-promoted Pd-based catalysts for acetylene hydrochlorination
Acetylene hydrochlorination over boron-doped Pd/HY zeolite catalysts