Area of research
Biomedical Engineering · Inorganic Chemistry
Research interest
Research focused on Selenium and Spinal cord injury, with related work in Photothermal therapy, Staphylococcus aureus, Nanocarriers. Notable publications include 'Functionalization and cancer-targeting design of ruthenium complexes for precise cancer therapy', 'A facile and general method for synthesis of antibiotic-free protein-based hydrogel: Wound dressing for the eradication of drug-resistant bacteria and biofilms', and 'Narrow Bandgap Schottky Heterojunction Sonosensitizer with High Electron–Hole Separation Boosted Sonodynamic Therapy in Bladder Cancer'.
Enhanced inhibition of neuronal ferroptosis and regulation of microglial polarization with multifunctional traditional Chinese medicine active ingredients-based selenium nanoparticles for treating spinal cord injury
Self‐Enhancing Drug Pair‐Driven Selenium Nanotherapeutics Reverses Microglial Pyroptosis Through NLRP3/Caspase‐1 Pathway and Neuronal Apoptosis for Treatment of Spinal Cord Injury
CuH‐Catalyzed Asymmetric Desymmetrization of Cyclobutenes via Stereodivergent Hydroamination
Ruthenium‐Catalyzed Diversified Kinetic Resolutions of Diaryl‐Substituted Cyclobutenones via Asymmetric Transfer Hydrogenation
Ruthenium‐Catalyzed Diversified Kinetic Resolutions of Diaryl‐Substituted Cyclobutenones via Asymmetric Transfer Hydrogenation
Narrow Bandgap Schottky Heterojunction Sonosensitizer with High Electron–Hole Separation Boosted Sonodynamic Therapy in Bladder Cancer
Tumor microenvironment-responsive metal nanotherapeutics for breast cancer chemo-/immunotherapy
A facile and general method for synthesis of antibiotic-free protein-based hydrogel: Wound dressing for the eradication of drug-resistant bacteria and biofilms
Uptake, transport, and metabolism of selenium and its protective effects against toxic metals in plants: a review
Biomedical Application of Reactive Oxygen Species–Responsive Nanocarriers in Cancer, Inflammation, and Neurodegenerative Diseases
Functionalization and cancer-targeting design of ruthenium complexes for precise cancer therapy