Area of research
Biomaterials · Biomedical Engineering
Research interest
Research focused on Nanotechnology and Polyhydroxyalkanoates, with related work in Biocompatibility, Polyester, Biodegradation. Notable publications include 'Polyhydroxyalkanoates: opening doors for a sustainable future', 'Vitrimers: Current research trends and their emerging applications', and 'Recent advances in the development of biodegradable PHB-based toughening materials: Approaches, advantages and applications'.
Boosted contact-electro-catalytic CO2 to methanol enabled by a built-in electric field design
Engineering Nanostructure, Interface, and Prelithiation of Advanced Silicon-Based Lithium-Ion Battery Anodes
Sustainable nanofibrous membranes for air filtration, water purification and oil removal
Dynamic crosslinking of thermoplastics via perfluorophenyl nitrene C–H insertion to form recyclable thermosets
ROS‐Driven Nanoventilator for MRSA‐Induced Acute Lung Injury Treatment via In Situ Oxygen Supply, Anti‐Inflammation and Immunomodulation
Recent Advances of Dynamic Covalent Chemistry Polymers Aligning with Principles of Green Chemistry
Zinc‐Coordinated Trienzyme Nanogel Cascade Therapy for Accelerated Post‐Pancreatectomy Cutaneous Wound Healing
Target High‐Efficient Ethylene Production from Dilute CO <sub>2</sub> Enabled by Sustainable Contact Electrons
Contact-electro-catalytic CO2 reduction from ambient air
Nanomaterial synthesis in deep eutectic solvents
Dynamic Covalent Bonds Enabled Carbon Fiber Reinforced Polymers Recyclability and Material Circularity
Multifunctional Silver‐Enzyme Nanogels Assembly with Efficient Trienzyme Cascades for Synergistic Diabetic Wound Healing
A Recyclable Ionogel with High Mechanical Robustness Based on Covalent Adaptable Networks
Recyclable, Malleable, and Strong Thermosets Enabled by Knoevenagel Adducts
Knoevenagel C═C Metathesis Enabled Glassy Vitrimers with High Rigidity, Toughness, and Malleability
Innovative biomaterials for food packaging: Unlocking the potential of polyhydroxyalkanoate (PHA) biopolymers
Valorization of coconut peat to develop a novel shape-stabilized phase change material for thermal energy storage
Advancing Recyclable Thermosets through C═C/C═N Dynamic Covalent Metathesis Chemistry
Thermochemical Valorization of Waste Plastic for Production of Synthetic Fuels, Fine Chemicals, and Carbon Nanotubes
White light powered antimicrobial nanoagents for triple photothermal, chemodynamic and photodynamic based sterilization
Sustainable carbonized biomass-stabilized phase change materials for thermal energy storage
Dynamic Covalent Bonds Enabled Carbon Fiber Reinforced Polymers Recyclability and Material Circularity
Biomineralization-inspired functional biomaterials: From principles to practice
Sustainable poly(lactic acid) transformation: Leveraging agri-food waste—compatibilization strategies nexus for enhanced properties
Cu2O/H2Ti3O7/Cellulose biohybrid film with efficient photocatalytic and antibacterial activities in solar-driven environmental decontamination
Ionogels: recent advances in design, material properties and emerging biomedical applications
Responsive hydrogel dressings for intelligent wound management
Active Site Engineering on Plasmonic Nanostructures for Efficient Photocatalysis
Nanoarchitecture-Integrated Hydrogel Systems toward Therapeutic Applications
Covalent adaptable networks from renewable resources: Crosslinked polymers for a sustainable future