Area of research
Materials Chemistry · Biomedical Engineering
Research interest
Research focused on Biocompatibility and Nanotechnology, with related work in Wound healing, Chitosan, Nanomaterials. Notable publications include 'A review of carbon nanomaterials/bacterial cellulose composites for nanomedicine applications', 'Metal-doped carbon dots for biomedical applications: From design to implementation', and 'The Potential of Novel Synthesized Carbon Dots Derived Resveratrol Using One-Pot Green Method in Accelerating in vivo Wound Healing'.
Preliminary Study on Carboxymethyl Chitosan-Based Carbon Dots for Tracing and Promoting Osteogenic Differentiation
Metal-doped carbon dots for biomedical applications: From design to implementation
Carbon Dot-Based Photo-Cross-Linked Gelatin Methacryloyl Hydrogel Enables Dental Pulp Regeneration: A Preliminary Study
Fe-doped herbal medicine-based carbon dots nanozyme as safe and effective antimicrobial and wound healing agent
Promotion of bone osteogenic and regeneration by resveratrol-derived carbon dots in inflammatory environments via a one-step hydrothermal method
A review of carbon nanomaterials/bacterial cellulose composites for nanomedicine applications
The Potential of Novel Synthesized Carbon Dots Derived Resveratrol Using One-Pot Green Method in Accelerating in vivo Wound Healing
Applications of Bacterial Cellulose-Based Composite Materials in Hard Tissue Regenerative Medicine
Synthesis of multicolor luminescent carbon dots based on carboxymethyl chitosan for cell imaging and wound healing application: In vitro and in vivo studies
Exosome-based engineering strategies for the diagnosis and treatment of oral and maxillofacial diseases
Biosafety evaluation of BaSi2O2N2:Eu2+/PDMS composite elastomers