| Literature DB >> 28613807 |
Nur Amin Hoque1, Pradip Thakur2, Swagata Roy1, Arpan Kool1, Biswajoy Bagchi1, Prosenjit Biswas1, Md Minarul Saikh1,3, Farha Khatun1, Sukhen Das1, Partha Pratim Ray1.
Abstract
The design of an energy-harvesting unit with superior output characteristics, i.e., high power density, is a great technological challenge in the present time. Here, simple, lightweight, flexible, and cost-effective piezoelectric nanogenerators (PENGs) have been fabricated by integrating the aluminum electrodes onto Er3+/Fe3+ stimulated electroactive, visible-light-emitting, and large dielectric PVDF films in which ErCl3·6H2O and Fe(NO3)3·9H2O act as the catalytic agents for electroactive β polymorph nucleation and the enhancement of dielectric properties. The developed PENGs exhibit excellent energy-harvesting performance with very high power density and very fast charging ability compared with the previously reported PVDF-assisted prototype nanogenerators. The PENGs lead to very large power density (∼160 and ∼55.34 mW cm-3) under periodic finger imparting for Er3+- and Fe3+-stimulated PVDF-film-based energy-harvester units, respectively. The fabricated self-powered PENG is also able to light up 54 commercially available light-emitting diodes.Entities:
Keywords: PVDF; dielectric constant; electroactive β-phase; piezoelectric nanogenerator; self-powered
Year: 2017 PMID: 28613807 DOI: 10.1021/acsami.7b08008
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229