DC
Dr. Jayashree Chandrasekar
National Taipei University of Technology, Bharathiar University, PSG College of Arts & Science
About
My research focuses on the design and synthesis of composite nanofibers for advanced self-powered technology integrating piezoelectric nanogenerators (PENG), triboelectric nanogenerators (TENG), and self-powered supercapacitors. I am particularly interested in material design, nanostructuring, and interface engineering to enhance energy conversion efficiency, charge transport, and device stability.
Employment
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National Taipei University of Technology Postdoctoral Researcher2026 - 2027
Education
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National Taipei University of Technology Doctor of Philosophy2022 - 2026
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Bharathiar University Masters2018 - 2020
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PSG College of Arts & Science Bachelor2015 - 2018
Projects & Funding
Projects & funding information is unavailable.
Publications (11)
- Hybrid Nanostructures in High Energy Density Supercapacitors Save
- PAN/MXene: a potent piezo-gen and cogent piezoelectric separator for self-chargeable supercapacitors Save
- In-situ oxidized MXene dopes for enhanced sensitivity of PVDF piezoelectric nanogenerators in Morse code transmission and photocatalysis applications Save
- Ambient stable ZnBr2-assisted lead-free perovskite for enhanced piezoelectricity of polyvinylidene fluoride in versatile piezo-phototronic applications Save
- Purification of water using TiO2/g-C3N5 nanocomposite: a visible light assisted photocatalytic activity Save
- MXene-Reinforced Water Insensitive Self-Healing Piezoelectric Nanogenerator for Ambient and Aquatic Mechano-Pressure Sensing Save
- Rationally Improved Surface Charge Density of Triboelectric Nanogenerator with TiO2‐MXene/Polystyrene Nanofiber Charge Trapping Layer for Biomechanical Sensing and Wound Healing Application Save
- Recent progress in self-healable energy harvesting and storage devices – a future direction for reliable and safe electronics Save
- Surface-enhanced fully nanofiber-based self-cleanable ultraviolet resistive triboelectric energy harvester for wearable smart garments Save
- Reinforcing a Thermoplastic Starch/Poly(butylene adipate-co-terephthalate) Composite Foam with Polyethylene Glycol under Supercritical Carbon Dioxide Save