Area of research
Materials Chemistry · Organic Chemistry
Research interest
Research interests include Chemistry, Materials science, Self-healing hydrogels, Ionic liquid, Wound healing, and Chitosan.
pH and Glucose Dual‐Responsive Hydrogels Promoted Diabetic Wound Healing by Remodeling the Wound Microenvironment
Pharmacokinetics, Tissue Distribution, and Excretion of 9‐Methylfascaplysin, a Potential Anti‐Alzheimer's Disease Agent
Antibacterial Activity of GO-Based Composites Enhanced by Phosphonate-Functionalized Ionic Liquids and Silver
Dynamic 3D-Network Coating Composite Enables Global Isolation of Phosphopeptides, Stepwise Separation of Mono- and Multi-Phosphopeptides, and Phosphoproteomics of Human Lung Cells
ROS‐Response Nanoparticles for Edaravone Delivery: Pathological‐Activated Neuroprotection Against Ischemic‐Reperfusion Injury in Ischemic Stroke
Virulence‐Selective Trap–Capture–Kill Antibacterial Nanostructures With Immune–Metabolic Regulation for Treating Implant‐Associated Infections
A Multi‐Responsive Hydrogel Combined With Mild Heat Stimulation Promotes Diabetic Wound Healing by Regulating Inflammatory and Enhancing Angiogenesis
Carboxymethyl Chitosan‐Based Antioxidant Hydrogel Accelerates Diabetic Wound Healing
Folate-Modified pH and ROS Dual-Responsive Polymeric Nanocarriers for Targeted Anticancer Drug Delivery
Rational molecular design converting fascaplysin derivatives to potent broad-spectrum inhibitors against bacterial pathogens via targeting FtsZ
Natural Polymer-Based Hydrogels: From Polymer to Biomedical Applications
Phosphonate-Functionalized Ionic Liquid Gel Polymer Electrolyte with High Safety for Dendrite-Free Lithium Metal Batteries
Chitosan-based injectable hydrogels with dual glucose sensors for precise control of insulin release and diabetes mellitus therapy
Design and synthesis of fascaplysin derivatives as inhibitors of FtsZ with potent antibacterial activity and mechanistic study
A dye-quenched/sensitized switching upconversion nanoprobe for high-contrast mapping of the pH-related tumor microenvironment
Fascaplysin derivatives binding to DNA via unique cationic five-ring coplanar backbone showed potent antimicrobial/antibiofilm activity against MRSA in vitro and in vivo
Indirubin-3′-monoxime-loaded PLGA-PEG nanoparticles for potential Alzheimer's disease treatment
PLGA-PEG-fucoxanthin nanoparticles protect against ischemic stroke in vivo
Flexible and thermally stable SiC fiber mats derived from electrospun boron-doped polyaluminocarbosilane precursors
PLGA-PEG Nanoparticles Facilitate In Vivo Anti-Alzheimer’s Effects of Fucoxanthin, a Marine Carotenoid Derived from Edible Brown Algae
Alendronate-Decorated Nanoparticles as Bone-Targeted Alendronate Carriers for Potential Osteoporosis Treatment
Nickel-Catalyzed Reductive Csp<sup>2</sup>–Csp<sup>3</sup> Cross Coupling Using Phosphonium Salts
Phosphonate-Functionalized Ionic Liquid: A New Surface Modifier Contributing to the Enhanced Enrichment of Phosphorylated Peptides
RETRACTED ARTICLE: A stepwise-targeting strategy for the treatment of cerebral ischemic stroke
Alcohols controlled selective radical cyclization of 1,6-dienes under mild conditions
Synthesis and Application of Sustainable Furfuryl Alcohol‐based Plasticizer
9-Methylfascaplysin Is a More Potent Aβ Aggregation Inhibitor than the Marine-Derived Alkaloid, Fascaplysin, and Produces Nanomolar Neuroprotective Effects in SH-SY5Y Cells
Fascaplysin Derivatives Are Potent Multitarget Agents against Alzheimer’s Disease: <i>in Vitro</i> and <i>in Vivo</i> Evidence
A Covalent Organic Framework-Derived Hydrophilic Magnetic Graphene Composite as a Unique Platform for Detection of Phthalate Esters from Packaged Milk Samples
Luminescence enhancement of Europium(III) complexes by an ionic liquid