Area of research
Polymers and Plastics · Biomedical Engineering
Research interest
Research interests include Materials science, Self-healing hydrogels, Copolymer, Polymer, PEDOT:PSS, and Conjugated system.
A Self-Acid-Doped and Self-Cross-Linked PEDOT Derivative Using a Simple and Effective Thiosulfate Addition
Mixing Insulating Commodity Polymers with Semiconducting n‐type Polymers Enables High‐Performance Electrochemical Transistors
Organic Mixed Ionic–Electronic Conductors Based on Tunable and Functional Poly(3,4-ethylenedioxythiophene) Copolymers
A PEDOT based graft copolymer with enhanced electronic stability
Impact of Side Chain Extension on the Morphology and Electrochemistry of Phosphonated Poly(Ethylenedioxythiophene) Derivatives
Green Synthesis of Lactone‐Based Conjugated Polymers for n‐Type Organic Electrochemical Transistors
Molecular design of an electropolymerized copolymer with carboxylic and sulfonic acid functionalities
A Phosphonated Poly(ethylenedioxythiophene) Derivative with Low Oxidation Potential for Energy-Efficient Bioelectronic Devices
Biofunctional conducting polymers: synthetic advances, challenges, and perspectives towards their use in implantable bioelectronic devices
Impact of Sterilization on a Conjugated Polymer-Based Bioelectronic Patch
Photodynamic therapy with nanoparticles to combat microbial infection and resistance
Hybrid Alkyl–Ethylene Glycol Side Chains Enhance Substrate Adhesion and Operational Stability in Accumulation Mode Organic Electrochemical Transistors
Versatile Fabrication Approach of Conductive Hydrogels via Copolymerization with Vinyl Monomers
Gecko-inspired chitosan adhesive for tissue repair
Conductive Polymer Hydrogels
A Single Component Conducting Polymer Hydrogel as a Scaffold for Tissue Engineering
Emulsion-coaxial electrospinning: designing novel architectures for sustained release of highly soluble low molecular weight drugs
Advances in Hydrogels Applied to Degenerative Diseases
Electrically Induced Disassembly of Electroactive Multilayer Films Fabricated from Water Soluble Polythiophenes
Conducting Polymer Hydrogels: A Single Component Conducting Polymer Hydrogel as a Scaffold for Tissue Engineering (Adv. Funct. Mater. 13/2012)