Area of research
Molecular Biology · Biomedical Engineering
Research interest
Research interests include Chemistry, Microfluidics, Microfluidic chip, Dual mode, Detection limit, and Nanoparticle.
Rotary fluorescence array microfluidic chip for rapid detection of multiple pathogens in foods using dual-discs assisted recycling for signal amplification
Phage/aptamer dual-encoded hydrogel arrays integrated with microfluidic platforms for simultaneous detection of multiple food pathogens
Stirring enrichment/bio-proliferation dual-amplified photoelectrochemical phage biosensor for selective and sensitive detection of foodborne pathogens
A microfluidic chip platform based on Pt nanozyme and magnetized phage composite probes for dual-mode detecting and imaging pathogenic bacteria viability
Versatile Platinum Nanoparticles-Decorated Phage Nanozyme Integrating Recognition, Bacteriolysis, and Catalysis Capabilities for On-Site Detection of Foodborne Pathogenic Strains Vitality Based on Bioluminescence/Pressure Dual-Mode Bioassay
A multi-channel microfluidic chip based on fluorescent distance readout-mode for rapid, simultaneous and visual detection of multiplex pathogens using phage- AIEgen-antimicrobial peptide-encoded tags
Microfluidic dual-mode detection system for multiple foodborne pathogens using phage-aptamer-DNAzyme composite encoded probes
A microfluidic chip based ratiometric aptasensor for antibiotic detection in foods using stir bar assisted sorptive extraction and rolling circle amplification
A colorimetric nitrite detection system with excellent selectivity and high sensitivity based on Ag@Au nanoparticles
Optimizing Au/Ag core–shell nanorods: purification, stability, and surface modification
Ultratrace detection of C-reactive protein by a piezoelectric immunosensor based on Fe3O4@SiO2 magnetic capture nanoprobes and HRP-antibody co-immobilized nano gold as signal tags
Enrichment of polychlorinated biphenyl 28 from aqueous solutions using Fe3O4 grafted graphene oxide