Area of research
Biomedical Engineering · Polymers and Plastics
Research interest
Research interests include Conducting polymers and applications, Advanced Sensor and Energy Harvesting Materials, Dielectric materials and actuators, and Ionic liquids properties and applications.
Bio‐Friendly Artificial Muscles Based on Carbon Nanotube Yarns and Eutectogel Derivatives
Ureidopyrimidinone based poly(ionic liquids) as all solid-state electrolytes for electrochromic devices
Electroactive Bi-Functional Liquid Crystal Elastomer Actuators.
Development of multi-layer electrochromic polymer display for remotely tunable green-cyan contact lens
Intrinsically Stretchable Integrated Passive Matrix Electrochromic Display Using PEDOT:PSS Ionic Liquid Composite.
Vitrimer ionogels towards sustainable solid-state electrolytes.
Healable Ionoelastomer Designed from Polymeric Ionic Liquid and Vitrimer Chemistry.
Piezoionic mechanoreceptors: Force-induced current generation in hydrogels
Piezoionic mechanoreceptors: Force-induced current generation in hydrogels.
Tailoring Electromechanical Properties of Natural Rubber Vitrimers by Cross-Linkers
Ionofibers: Ionically Conductive Textile Fibers for Conformal i‐Textiles
Photopolymerizable Ionogel with Healable Properties Based on Dioxaborolane Vitrimer Chemistry.
Fabrication of bicontinuous double networks as thermal and pH stimuli responsive drug carriers for on-demand release.
Printed PEDOT:PSS Trilayer: Mechanism Evaluation and Application in Energy Storage.
Tailorable, 3D structured and micro-patternable ionogels for flexible and stretchable electrochemical devices
Study of the piezoionic effect and influence of electrolyte in conducting polymer based soft strain sensors
Ionic electroactive polymer artificial muscles in space applications