Area of research
Polymers and Plastics · Biomedical Engineering
Research interest
Research interests include Materials science, Nanotechnology, Polymer, PEDOT:PSS, Self-healing hydrogels, and Electrochromism.
PEDOT:PSS-based electronic materials: Preparation, performance tuning, processing, applications, and future prospect
Merging PEDOT and polyaniline for cost-effective yet high performance flexible electrochromic-supercapacitor dual device
Biomimetic Dual-Layer Architectural Hydrogel Bandage with Smart Thermally Self-Contraction for Enhanced Wound Closure and Burn Wound Healing
A reusable, healable, and biocompatible PEDOT:PSS hydrogel-based electrical bioadhesive interface for high-resolution electromyography monitoring and time–frequency analysis
Design of a supersoft, ultra-stretchable, and 3D printable hydrogel electrical bioadhesive interface for electromyography monitoring
3D printable high-performance conducting polymer hydrogel for all-hydrogel bioelectronic interfaces
Fatigue‐Resistant Conducting Polymer Hydrogels as Strain Sensor for Underwater Robotics
3D Printing of Robust High‐Performance Conducting Polymer Hydrogel‐Based Electrical Bioadhesive Interface for Soft Bioelectronics
Robust hydrogel sensors for unsupervised learning enabled sign‐to‐verbal translation
Self-healing electrical bioadhesive interface for electrophysiology recording
High‐Stretchability, Ultralow‐Hysteresis ConductingPolymer Hydrogel Strain Sensors for Soft Machines
Stretchable Anti‐Fogging Tapes for Diverse Transparent Materials
3D printing of conducting polymers
Strong adhesion of wet conducting polymers on diverse substrates
Nanostructured conducting polymers and their composites: synthesis methodologies, morphologies and applications
Structural Design and Applications of Stereoregular Fused Thiophenes and Their Oligomers and Polymers
Synthesis and electrochromic performances of donor-acceptor-type polymers from chalcogenodiazolo [3,4-c]pyridine and alkyl ProDOTs
Isoindigo as an electron−deficient unit for high−performance polymeric electrochromics
Highly stable hybrid selenophene-3,4-ethylenedioxythiophene as electrically conducting and electrochromic polymers
Synthesis and electrochromic properties of polyacrylate functionalized poly(3,4-ethylenedioxythiophene) network films