Area of research
Biomedical Engineering · Materials Chemistry
Research interest
Research interests include Nanoporous metals and alloys, Supercapacitor Materials and Fabrication, Nanoplatforms for cancer theranostics, and Electrocatalysts for Energy Conversion.
Active microneedle patch equipped with spontaneous bubble generation for enhanced rheumatoid arthritis treatment
Chiral light detection with centrosymmetric-metamaterial-assisted valleytronics
Synergistic-potential engineering enables high-efficiency graphene photodetectors for near- to mid-infrared light
“All-in-one” metal polyphenol network nanocapsules integrated microneedle patches for lipophagy fueled ferroptosis-mediated multimodal therapy
An all-in-one optoelectronic logic device with self-distinguishable dual-band photoresponse
Understanding the fast kinetics and mechanism of sodium storage in antimony using <i>ab initio</i> grand canonical Monte Carlo simulation and <i>operando</i> X-ray scattering
Microneedle-assisted vaccination combined with autophagy regulation for antitumor immunotherapy
Enhanced Photogating Effect in Graphene Photodetectors <i>via</i> Potential Fluctuation Engineering
Inhalable Biomimetic Protein Corona-Mediated Nanoreactor for Self-Amplified Lung Adenocarcinoma Ferroptosis Therapy
A Perfect Pair: Stabilized Black Phosphorous Nanosheets Engineering with Antimicrobial Peptides for Robust Multidrug Resistant Bacteria Eradication
Four-armed host-defense peptidomimetics-augmented vanadium carbide MXene-based microneedle array for efficient photo-excited bacteria-killing
<i>In Situ</i> Self-Assembly Nanomicelle Microneedles for Enhanced Photoimmunotherapy <i>via</i> Autophagy Regulation Strategy
Recent advances in microneedles-mediated transdermal delivery of protein and peptide drugs
Intelligent and spatiotemporal drug release based on multifunctional nanoparticle-integrated dissolving microneedle system for synergetic chemo-photothermal therapy to eradicate melanoma
Multifunctional nanoreactors-integrated microneedles for cascade reaction-enhanced cancer therapy
Tailored core‒shell dual metal–organic frameworks as a versatile nanomotor for effective synergistic antitumor therapy
A homogenous nanoporous pulmonary drug delivery system based on metal-organic frameworks with fine aerosolization performance and good compatibility
Metal–Organic Framework-Based Chemo-Photothermal Combinational System for Precise, Rapid, and Efficient Antibacterial Therapeutics
Enhanced Cycling Stability of Macroporous Bulk Antimony‐Based Sodium‐Ion Battery Anodes Enabled through Active/Inactive Composites