Area of research
Biomedical Engineering · Electrical and Electronic Engineering
Research interest
Research interests include Chemistry, Photodynamic therapy, Materials science, Nanotechnology, Photosensitizer, and Photochemistry.
Ultrabright 1650 nm-Emitting Biodegradable Organic Luminophores for NIR-IIbc Fluorescence Imaging
A Sterically Controlled and Tumor-Activated Programmable Singlet-Oxygen Battery
Oxygen-independent organic photosensitizer with ultralow-power NIR photoexcitation for tumor-specific photodynamic therapy
Thymoquinone as an electron transfer mediator to convert Type II photosensitizers to Type I photosensitizers
Unlocking Copper-Free Interfacial Asymmetric C–C Coupling for Ethylene Photosynthesis from CO<sub>2</sub> and H<sub>2</sub>O
Programmable Singlet Oxygen Battery for Automated Photodynamic Therapy Enabled by Pyridone–Pyridine Tautomer Engineering
Tumor Microenvironment-Activated In Situ Synthesis of Peroxynitrite for Enhanced Chemodynamic Therapy
Self-assembled aldehyde dehydrogenase-activatable nano-prodrug for cancer stem cell-enriched tumor detection and treatment
A Supramolecular Self-Assembled Nanoprodrug for Enhanced Ferroptosis Therapy
Nitric Oxide‐Activated Bioorthogonal Codelivery Nanoassembly for In Situ Synthesis of Photothermal Agent for Precise and Safe Anticancer Treatment
Activatable Type I Photosensitizer with Quenched Photosensitization Pre and Post Photodynamic Therapy
Overcoming ROS Resistance of Photodynamic Therapy with Self‐Assembled Nano‐Prodrugs for Efficient Triple‐Negative Breast Cancer
Encapsulation of Dual‐Passivated Perovskite Quantum Dots for Bio‐Imaging
Improving the Electronic Transporting Property for Flexible Field-Effect Transistors with Naphthalene Diimide-Based Conjugated Polymer through Branching/Linear Side-Chain Engineering Strategy