Area of research
Materials Chemistry · Spectroscopy
Research interest
Research interests include Chemistry, Fluorescence, Nanotechnology, Detection limit, Photochemistry, and Analyte.
Synergistic non-covalent-recognition-enabled highly efficient through-space charge transfer for specific synthetic cannabinoid EG-2201 detection
Precise Modulation of the π-Conjugated Bridge of Naphthalimide-Based Probes for High-Performance Fluorescent Sensing of H<sub>2</sub>O<sub>2</sub>
Electronic Effect-Tuned Cooperativity of Multiple Noncovalent Interactions for Specific Detection of ADB-Type Synthetic Cannabinoids
One-Step Coordinating POPD in H<sub>3</sub>BTB-Sensitized EuMOF-Enabled Tunable Antenna Effects for Fluorescence Turn-On Sensing of Sarin Analogue Vapor
Electron-Donating/Accepting Group Modulation Enhanced Fluorescent Sensing of Synthetic Cannabinoid JWH-018 via Through-Space Charge Transfer
Precise Electron-Withdrawing Strength Regulation of π-Conjugate Bridge-Boosted Specific Detection toward α-Methyltryptamine
Differentiation and identification of CA series synthetic cannabinoids based on SERS technology coupled with support vector machine
Noncovalent Interaction-Based Probe Design for PET-Facilitated Fluorescence Sensing of Synthetic Cannabinoids
Molecular length effects discovered from first-principles modeling fluorescent sensing of the functionalized UiO-66 probe towards nerve agents
A Class of Promising Merocyanine-Functionalized Cd<sub>33</sub>Se<sub>33</sub> Quantum Dots with Strong Fluorescence Emission in Tetrahydrofuran and Acetonitrile
Controlled Synthesis of Preferential Facet‐Exposed Fe‐MOFs for Ultrasensitive Detection of Peroxides
Precise counter anion modulation of the self-assembly behavior-endowed ultrasensitive and specific dual-mode visualization of nitrate
Amination and Protonation Facilitated Novel Isoxazole Derivative for Highly Efficient Electron and Hole Separation
A Deep Understanding on the Effective Generation of Twisted Intramolecular Charge Transfer by Protonation in Thiazolo[5,4-<i>d</i>]thiazole Derivatives
D-π-A Dual-Mode Probe Design for the Detection of nM-Level Typical Oxidants
A TD-DFT study of a class of D–π–A fluorescent probes for detection of typical oxidants