Self-powered flexible Fe-doped RGO/PVDF nanocomposite: an excellent material for a piezoelectric energy harvester
Author:
Affiliation:
1. Materials Science Centre
2. Indian Institute of Technology Kharagpur
3. Kharagpur 721302, India
4. Organic Nano-Piezoelectric Device Laboratory
5. Department of Physics
6. Jadavpur University
7. Kolkata 700032, India
Abstract
A non-electrically poled Fe-RGO/PVDF (99% γ-phase) nanocomposite exhibited a 5.1 V output voltage and 0.254 μA current, applicable for a piezoelectric energy harvester.
Publisher
Royal Society of Chemistry (RSC)
Subject
General Materials Science
Link
http://pubs.rsc.org/en/content/articlepdf/2015/NR/C5NR02067K
Reference51 articles.
1. Piezoelectric Nanogenerators Based on Zinc Oxide Nanowire Arrays
2. Nanotechnology-Enabled Energy Harvesting for Self-Powered Micro-/Nanosystems
3. Polarization Orientation, Piezoelectricity, and Energy Harvesting Performance of Ferroelectric PVDF-TrFE Nanotubes Synthesized by Nanoconfinement
4. Self-Powered pH Sensor Based on a Flexible Organic–Inorganic Hybrid Composite Nanogenerator
5. Electroactive phases of poly(vinylidene fluoride): Determination, processing and applications
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