Area of research
Materials Chemistry · Organic Chemistry
Research interest
Research interests include Antimicrobial, Bacteria, Materials science, Biofilm, Cationic polymerization, and Antibiotics.
A Near-Infrared Fluorescent Nanosensor for Direct and Real-Time Measurement of Indole-3-Acetic Acid in Plants
Carbene formation as a mechanism for efficient intracellular uptake of cationic antimicrobial carbon acid polymers
Hydrogel dressings with intrinsic antibiofilm and antioxidative dual functionalities accelerate infected diabetic wound healing
A cationic main-chain poly(carbonate-imidazolium) potent against Mycobacterium abscessus and other resistant bacteria in mice
Designer co-beta-peptide copolymer selectively targets resistant and biofilm Gram-negative bacteria
A hydrophilic polyimidazolium antibiotic targeting the membranes of Gram-negative bacteria
Polymers as advanced antibacterial and antibiofilm agents for direct and combination therapies
Antimicrobial Effect of a Novel Chitosan Derivative and Its Synergistic Effect with Antibiotics
Nanosensor Detection of Synthetic Auxins <i>In Planta</i> using Corona Phase Molecular Recognition
Real-time detection of wound-induced H2O2 signalling waves in plants with optical nanosensors
The Mechanisms and the Applications of Antibacterial Polymers in Surface Modification on Medical Devices
A Glycosylated Cationic Block Poly(β‐peptide) Reverses Intrinsic Antibiotic Resistance in All ESKAPE Gram‐Negative Bacteria
Biguanide-Derived Polymeric Nanoparticles Kill MRSA Biofilm and Suppress Infection <i>In Vivo</i>
Precisely Structured Nitric-Oxide-Releasing Copolymer Brush Defeats Broad-Spectrum Catheter-Associated Biofilm Infections <i>In Vivo</i>
Designer broad-spectrum polyimidazolium antibiotics
Enantiomeric glycosylated cationic block co-beta-peptides eradicate Staphylococcus aureus biofilms and antibiotic-tolerant persisters
Antimicrobial Peptide-Reduced Gold Nanoclusters with Charge-Reversal Moieties for Bacterial Targeting and Imaging
Chitosan-Based Peptidopolysaccharides as Cationic Antimicrobial Agents and Antibacterial Coatings
Magnetic nanochain integrated microfluidic biochips
In Vivo Anti-Biofilm and Anti-Bacterial Non-Leachable Coating Thermally Polymerized on Cylindrical Catheter
Nanoparticles of Short Cationic Peptidopolysaccharide Self-Assembled by Hydrogen Bonding with Antibacterial Effect against Multidrug-Resistant Bacteria
Increasing bacterial affinity and cytocompatibility with four-arm star glycopolymers and antimicrobial α-polylysine
Surface enhanced Raman scattering by graphene-nanosheet-gapped plasmonic nanoparticle arrays for multiplexed DNA detection
Enhanced ex vivo expansion of adult mesenchymal stem cells by fetal mesenchymal stem cell ECM
Cationic Peptidopolysaccharides Show Excellent Broad‐Spectrum Antimicrobial Activities and High Selectivity