Area of research
Materials Chemistry · Molecular Biology
Research interest
Research interests include Chemistry, Catalysis, Adsorption, Porosity, Chemical engineering, and Bimetallic strip.
Smartphone-assisted detection platform with dendritic-like N-doped meso-macroporous carbon nanozyme for fast and colorimetric detection of D-limonene
Hierarchical meso-macroporous iron-nitrogen-coordinated carbon nanozyme: Preparation, catalytic mechanism, and used as colorimetric sensor array for on-site discrimination and detection of multiple sulfides
Porous double variable-valence FeCe nanozyme: preparation, catalytic mechanism, and use as sensor array for high-throughput discrimination of heavy metal ions
Rapid discrimination of mixed nanoplastics featuring sizes down to 20 nm based on the differential inhibition of the enzyme-like activity of meso–macroporous nanozymes
Ultrafine FeCuAgCeGd–based high–entropy nanozyme: Preparation, catalytic mechanism, and point–of–care detection of dopamine in human serum
Iron-driven self-assembly of dopamine into dumbbell-shaped nanozyme for visual and rapid detection of norfloxacin on a smartphone-assisted platform
Medium entropy-derived flower-like FeCeCu nanozyme with excellent oxidase-like activity for on-site and visual detection of carbosulfan
CeFe nanofibrous carbon nanozyme integrated with smartphone for the point-of-care testing of norfloxacin in water
A single-atom nanozyme-enabled strategy for rapid, visual, and real-time detection of polystyrene nanoplastics in water
Dimensionality engineering of flower-like bimetallic nanozyme with high peroxidase-activity for naked-eye and on-site detection of acrylamide in thermally processed foods
Nitrogen-doped polydopamine manganese nanoparticles with excellent oxidase-like activity for ultrafast detection of glutathione at room temperature
High strength chitin/chitosan-based aerogel with 3D hierarchically macro-meso-microporous structure for high-efficiency adsorption of Cu(II) ions and Congo red
Fe-Ni bimetallic nanoparticles encapsulated into nanofibrous carbon microspheres as a catalytic nanoreactor for highly selective hydrogenation of 5-hydroxymethylfurfural to 2,5-dihydroxymethylfuran or 2,5-dihydroxymethyltetrahydrofuran
Magnetic and N–doped nanofibrous carbon microsphere with hierarchical porosity as a nanozyme for on-site and visual detection of glucose
3D Hierarchical Porous and N-Doped Carbonized Microspheres Derived from Chitin for Remarkable Adsorption of Congo Red in Aqueous Solution
N-doped magnetic three-dimensional carbon microspheres@TiO2 with a porous architecture for enhanced degradation of tetracycline and methyl orange via adsorption/photocatalysis synergy
Graphitic carbon embedded FeNi nanoparticles for efficient deoxygenation of stearic acid without using hydrogen and solvent
Selective Synthesis of Bioderived Dibenzofurans and Bicycloalkanes from a Cellulose-Based Route
A novel pectin from Akebia trifoliata var. australis fruit peel and its use as a wall-material to coat curcumin-loaded zein nanoparticle
Synthesis of renewable C–C cyclic compounds and high-density biofuels using 5-hydromethylfurfural as a reactant
Bacteria-triggered hyaluronan/AgNPs/gentamicin nanocarrier for synergistic bacteria disinfection and wound healing application
New pectin-induced green fabrication of Ag@AgCl/ZnO nanocomposites for visible-light triggered antibacterial activity
A novel antibacterial agent based on AgNPs and Fe3O4 loaded chitin microspheres with peroxidase-like activity for synergistic antibacterial activity and wound-healing