Area of research
Biomedical Engineering · Materials Chemistry
Research interest
Research interests include Nanoplatforms for cancer theranostics, Luminescence and Fluorescent Materials, Advanced biosensing and bioanalysis techniques, and Luminescence Properties of Advanced Materials.
Water-Regulated Formation of Asymmetric Janus-Like CeO<sub>2</sub> Nanoparticles with Increased Specific Surface Area.
Spatiotemporal multi-omics analysis uncovers NAD-dependent immunosuppressive niche triggering early gastric cancer
NIR-II Luminescent Nanothermometer for Precise Assessment of Ischemic Stroke.
Stealth Nanoparticles with a "Self-Consuming" Shell for Long-Term Blood Vessel Imaging.
Nature-Inspired Photocatalytic Azo Bond Cleavage with Red Light.
Cucurbit[8]uril-based water-dispersible assemblies with enhanced optoacoustic performance for multispectral optoacoustic imaging
Afterglow/Fluorescence Dual-Emissive Ratiometric Oxygen Probe for Tumor Hypoxia Imaging
Nature-Inspired Photocatalytic Azo Bond Cleavage with Red Light
Nanothermometer for In Vivo Temperature Detection with High Spatial Resolution Based on Core–Shell Rare Earth Nanoparticles
Afterglow/Fluorescence Dual-Emissive Ratiometric Oxygen Probe for Tumor Hypoxia Imaging.
Ratiometric Fluorescence and Afterglow Lifetime Dual-Channel Nanoprobe for Simultaneous Imaging of HOCl and Temperature in Arthritis.
An NIR‐II Photothermally Triggered “Oxygen Bomb” for Hypoxic Tumor Programmed Cascade Therapy
A Smart Theranostic Prodrug System Activated by Reactive Oxygen Species for Regional Chemotherapy of Metastatic Cancer
Visualization of Acute Inflammation through a Macrophage-Camouflaged Afterglow Nanocomplex.
Engineering of dendritic mesoporous silica nanoparticles for efficient delivery of water-insoluble paclitaxel in cancer therapy
NIR-II emitting rare-earth nanoparticles for a lateral flow immunoassay in hemolysis
Visualization of Acute Inflammation through a Macrophage-Camouflaged Afterglow Nanocomplex
Dual-Modality Detection of Early-Stage Drug-Induced Acute Kidney Injury by an Activatable Probe
Ultrabright NIR‐II Emissive Polymer Dots for Metastatic Ovarian Cancer Detection
Lifetime-based nanothermometry <i>in vivo</i> with ultra-long-lived luminescence
Ln<sup>3+</sup>-doped nanoparticles with enhanced NIR-II luminescence for lighting up blood vessels in mice
Multifunctional Smart Yolk–Shell Nanostructure with Mesoporous MnO<sub>2</sub> Shell for Enhanced Cancer Therapy
Detecting Basal Myeloperoxidase Activity in Living Systems with a Near-Infrared Emissive “Turn-On” Probe
A fluorescent probe operating under weak acidic conditions for the visualization of HOCl in solid tumors in vivo
Loss of SRSF2 triggers hepatic progenitor cell activation and tumor development in mice
High-sensitivity imaging of time-domain near-infrared light transducer
Release of Amino‐ or Carboxy‐Containing Compounds Triggered by HOCl: Application for Imaging and Drug Design
Development of Polyene-Bridged Hybrid Rhodamine Fluorophores for High-Resolution NIR-II Imaging
Dye-sensitized upconversion nanocomposites for ratiometric semi-quantitative detection of hypochlorite<i>in vivo</i>
Near‐Infrared Upconversion Luminescence and Bioimaging In Vivo Based on Quantum Dots