Area of research
Materials Chemistry · Molecular Biology
Research interest
Research interests include Advanced biosensing and bioanalysis techniques, Nanoplatforms for cancer theranostics, Luminescence and Fluorescent Materials, and Luminescence Properties of Advanced Materials.
Tunable persistent luminescence nanoparticles for profiling bacterial extracellular azoreductase activity and antibiotic susceptibility.
Autofluorescence-free ratiometric temperature monitoring with multiple emissive persistent luminescent nanothermometers.
Boosting Persistent Luminescence with Spatially Confined Ion Doping for Profiling Bacterial-Environment Interactions.
Multivalent-effect immobilization of reduced-dimensional perovskites for efficient and spectrally stable deep-blue light-emitting diodes
Enhanced Electrochemical and Photochemical Sensors for In Vivo Biological Monitoring Based on Carbon Nanomaterials
Amplifying Persistent Luminescence in Heavily Doped Nanopearls for Bioimaging and Solar-to-Chemical Synthesis.
Sensitive detection of α-Fetoprotein using an electrochemiluminescence sensor combining molecular imprinting and aptamer recognition on a graphite carbon nitride/polypyrrole platform
Flexible electrochromic film for visualized meat freshness detection
Bispecific Metabolic Monitoring Platform for Bacterial Identification and Antibiotic Susceptibility Testing.
Profiling of Biofluid Metabolites with a Kinetically Differentiated Binary Biosensing Platform.
Target-Responsive Lanthanide Coordination Nanoparticles for Time-Resolved Photoluminescence and SERS Dual-Mode Biosensing.
Construction of a label-free electrochemical biosensing system utilizing Fe3O4/α-Fe2O3@Au with magnetic-induced self-assembly for the detection of EGFR glycoprotein
Broadband Near-Infrared Light Excitation Generates Long-Lived Near-Infrared Luminescence in Gallates.
X-ray/γ-ray/Ultrasound-Activated Persistent Luminescence Phosphors for Deep Tissue Bioimaging and Therapy.
Constructing a label-free electrochemical biosensor based on magnetic α-Fe2O3/Fe3O4 heterogeneous nanosheets for the sensitive detection of VKORC1*2 gene
Amplifying persistent luminescence in heavily doped nanopearls for bioimaging and solar-to-chemical synthesis
Tautomeric mixture coordination enables efficient lead-free perovskite LEDs
Magnetically induced self-assembly electrochemical biosensor with ultra-low detection limit and extended measuring range for sensitive detection of HER2 protein
Label-free electrochemical biosensor with magnetically induced self-assembly for the detection of cancer antigen 125
Electrochemical peptide nucleic acid functionalized α-Fe2O3/Fe3O4 nanosheets for detection of CYP2C19*2 gene
Nonstoichiometric Nanocubes with a Controllable Morphology and Persistent Luminescence for Autofluorescence-Free Biosensing.
Construction of electrochemical biosensor based on magnetic Fe3O4/α-Fe2O3 heterogeneous nanorods for the sensitive detection of MUC1 mucoprotein
Visualization of Phototherapy Evolution by Optical Imaging.
Bimodal persistent luminescence for autofluorescence-free ratiometric biosensing.
An electrochemiluminescence biosensor based on Graphitic carbon nitride luminescence quenching for detection of AFB1
Cyanidin attenuates the apoptosis of rat nucleus pulposus cells and the degeneration of intervertebral disc via the JAK2/STAT3 signal pathway <i>in vitro</i> and <i>in vivo</i>
Multiplexed Identification of Bacterial Biofilm Infections Based on Machine-Learning-Aided Lanthanide Encoding.
Controllable growth of spiral ganglion neurons by magnetic colloidal nanochains
Solar-Driven Overproduction of Biofuels in Microorganisms.
Extracellular Vesicles from HIF-1α-Overexpressing Adipose-Derived Stem Cells Restore Diabetic Wounds Through Accelerated Fibroblast Proliferation and Migration