Area of research
Biomedical Engineering · Biomaterials
Research interest
Research interests include Electrospun Nanofibers in Biomedical Applications, Graphene and Nanomaterials Applications, Luminescence Properties of Advanced Materials, and Bone Tissue Engineering Materials.
Polymorphy-triggered rapid self-reconstruction for efficient alkaline seawater oxidation
Multifunctional Co-FeS2 nanozyme-hydrogel composite promotes diabetic wound healing by synergistic antioxidant, antibacterial, and anti-inflammation therapy
Recent Development of Fibrous Hydrogels: Properties, Applications and Perspectives
Puerarin‐Loaded Electrospun Patches with Anti‐Inflammatory and Pro‐Collagen Synthesis Properties for Pelvic Floor Reconstruction
Thermal immuno-nanomedicine in cancer
An NIR photothermal-responsive hybrid hydrogel for enhanced wound healing
NADPH Selective Depletion Nanomedicine‐Mediated Radio‐Immunometabolism Regulation for Strengthening Anti‐PDL1 Therapy against TNBC
NIR-responsive MXene nanobelts for wound healing
Ca2+-supplying black phosphorus-based scaffolds fabricated with microfluidic technology for osteogenesis
Fighting Immune Cold and Reprogramming Immunosuppressive Tumor Microenvironment with Red Blood Cell Membrane-Camouflaged Nanobullets
Inflammation-Targeted Celastrol Nanodrug Attenuates Collagen-Induced Arthritis through NF-κB and Notch1 Pathways
MXene Composite Nanofibers for Cell Culture and Tissue Engineering
Construction of hybrid hollow architectures by in-situ rooting ultrafine ZnS nanorods within porous carbon polyhedra for enhanced lithium storage properties
pH-responsive poly (acrylic acid)-gated mesoporous silica and its application in oral colon targeted drug delivery for doxorubicin
Effects of Polyacrylonitrile/MoS<sub>2</sub> Composite Nanofibers on the Growth Behavior of Bone Marrow Mesenchymal Stem Cells
Soft Graphene Nanofibers Designed for the Acceleration of Nerve Growth and Development
Fabrication, mechanical properties, and biocompatibility of reduced graphene oxide-reinforced nanofiber mats
A novel fluffy hydroxylapatite fiber scaffold with deep interconnected pores designed for three-dimensional cell culture
Electrospun Fibers and Tissue Engineering