Area of research
Molecular Biology · Electrical and Electronic Engineering
Research interest
Research interests include Advanced biosensing and bioanalysis techniques, Molecular Sensors and Ion Detection, Advancements in Battery Materials, and Electrochemical sensors and biosensors.
GaMOF@GaNPs hybrid nanostructure-enhanced SPR biosensor: Dual-target detection of Parkinson's disease biomarkers in serum
Cell membrane biomimetic nanoparticle-enhanced SPR biosensor for facile and sensitive detection of circulating tumor cells
Enhancement of toluene catalytic oxidation over Mn-doped LaCoO3 via simultaneously regulating the Co−O bond and electron transfer
Nanopore Confinement Effect Mediated Heterogeneous Plasmonic Metasurfaces for Multifunctional Biosensing Interfaces.
Green solid-state synthesis of Cu<sub>4</sub>O<sub>3</sub>/biochar composites with high antimicrobial activity
Plasma-Induced Amino HBP/Ag Nanoparticle-Grafted PP Melt-Blown Nonwoven Fabric and Its Antibacterial Performance
Electron Perturbation for Chiral DNA Point Mutation.
Supramolecular-assisted transformable nanopeptides for facile and sensitive detection of soluble PD-L1 in serum
Controllable synthesis of multi-tip spatial gold nanostructures to facilitate SPR enhancement for exosomal PD-L1 assay
Construction of a sensitive SWCNTs integrated SPR biosensor for detecting PD-L1+ exosomes based on Fe3O4@TiO2 specific enrichment and signal amplification
2D/0D Heterojunction Interface with Photovoltaic Enhancement and Stabilization for Label‐Free Exosome Biosensor
Multifunctional DNA scaffold mediated gap plasmon resonance: Application to sensitive PD-L1 sensor
Interface-Engineered 2D Heterojunction with Photoelectric Dual Gain: Mxene@MOF-Enhanced SPR Spectroscopy for Direct Sensing of Exosomes.
Plasmon-enhanced photo/electrocatalysis: Harnessing hetero-nanostructures for sustainable energy and environmental applications
Ultrasensitive electrochemical sensor based on synergistic effect of Ag@MXene and antifouling cyclic multifunctional peptide for PD-L1 detection in serum.
2D MOF-enhanced SPR detector based on tunable supramolecular probes for direct and sensitive detection of DOX in serum.
Current strategies of plasmonic nanoparticles assisted surface-enhanced Raman scattering toward biosensor studies
Ti3C2Tx MXene -facilitated non-selective trapping effect: Efficient SERS detection of exosomal PD-L1
2D MOF-enhanced SPR sensing platform: Facile and ultrasensitive detection of Sulfamethazine via supramolecular probe
PD-L1 exosomes electrochemical sensor based on coordination of AgNCs and Zr4+: Multivalent peptide enhancing target capture efficiency and antifouling performance
Silver nanoparticles deposited on a cotton fabric surface <i>via</i> an <i>in situ</i> method using reactive hyperbranched polymers and their antibacterial properties
Tunable Au@SiO<sub>2</sub>/Au Film Metasurface as Surface Plasmon Resonance Enhancer for Direct and Ultrasensitive Detection of Exosomes.
Perspectives and trends in advanced optical and electrochemical biosensors based on engineered peptides.
Dual‐signal immuno‐competitive determination of brain natriuretic peptide based on magnetic nanozyme
Intrinsic Design and Modulated Circular Dichroism of Inorganic Nanowire/Hydrogel Composite
Simultaneous Detection and Decontamination of Dichromate Ions: The Fluorescence Response and Photocatalysis of Thiadiazole-Modified Zr-Metal-Organic Frameworks.
Quantification of Collagenogenesis in Experimental Early-stage Alcoholic LiverFibrosis using Cis-4-[18F]fluoro-L-Proline microPET
Rapid and sensitive detection of PD-L1 exosomes using Cu-TCPP 2D MOF as a SPR sensitizer
Review of Interface Modification Based on 2D Nanomaterials for Surface Plasmon Resonance Biosensors
Copper metal organic framework as natural oxidase mimic for effective killing of Gram-negative and Gram-positive bacteria.