Area of research
Cellular and Molecular Neuroscience · Organic Chemistry
Research interest
Research focused on Regeneration (biology) and Scaffold, with related work in Nanotechnology, Carbon nanotube, Nanofiber. Notable publications include 'Advances in injectable self-healing biomedical hydrogels', 'Polymer-based composites by electrospinning: Preparation & functionalization with nanocarbons', and 'A 1.3-micrometre-thick elastic conductor for seamless on-skin and implantable sensors'.
CP/HA/HGF Conductive Composite Scaffolds with Synergistic Electrical Stimulation for Nerve Regeneration
Bioengineered composite hydrogel scaffold for accelerated skin regeneration and wound repair
A 1.3-micrometre-thick elastic conductor for seamless on-skin and implantable sensors
Nanotunnels within Poly(3,4-ethylenedioxythiophene)-Carbon Nanotube Composite for Highly Sensitive Neural Interfacing
Advances in injectable self-healing biomedical hydrogels
Bionanotube/Poly(3,4-ethylenedioxythiophene) Nanohybrid as an Electrode for the Neural Interface and Dopamine Sensor
Polymer-based composites by electrospinning: Preparation & functionalization with nanocarbons
The cellular response of nerve cells on poly-l-lysine coated PLGA-MWCNTs aligned nanofibers under electrical stimulation
Lycium barbarum polysaccharide encapsulated Poly lactic-co-glycolic acid Nanofibers: cost effective herbal medicine for potential application in peripheral nerve tissue engineering
Neural interfaces engineered via micro- and nanostructured coatings