Analysis of Electrospinning and Additive Effect on ? Phase Content of Electrospun Pvdf Nanofiber Mats for Piezoelectric Energy Harvester Nanogenerators

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Date

2022

Authors

Özaytekin, İlkay

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Publisher

Institute of Physics

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Green Open Access

No

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Abstract

Harvesting energy with piezoelectric nanoparticles enables the development of self-powered devices. Poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF) has been widely used in a variety of fields due to its superior piezoelectric properties. PVDF’s piezoelectric performance is affected by the presence of polar phase in the crystalline structure. The electrospinning process was used in this study to achieve high ? phase ratios in the PVDF crystalline structure using various additives (graphene, boron nitride, and quartz (SiO2)). The Taguchi experimental design method was used to determine the most significant parameters affecting ? phase content from seven factors, as well as the optimal levels of the significant factors. The Fourier transform infrared, x-ray diffraction, scanning electron microscopy, energy-dispersive x-ray and differential scanning calorimetry analyses were used to characterize the composite PVDF nanofiber mats produced under optimal conditions, and the output voltage was measured using an oscilloscope. The composite PVDF nanofiber mat with the highest ? phase concentration demonstrated a maximum output voltage of 8.68 V under optimal conditions, indicating that it outperformed than pure PVDF under equal electrospinning conditions. © 2022 IOP Publishing Ltd.

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Keywords

design of experiment, electrospinning, energy harvesting, PVDF nanofiber, ? crystal phase, Additives, Design, Differential scanning calorimetry, Energy harvesting, Fluorine compounds, III-V semiconductors, Nanofibers, Piezoelectricity, Scanning electron microscopy, Silica, Crystal phasis, Crystalline structure, Nanofiber mats, Optimal conditions, Output voltages, P.V.D.F, Phase's contents, Piezoelectric, PVDF nanofiber, ? crystal phase, Electrospinning

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Fields of Science

02 engineering and technology, 0210 nano-technology

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WoS Q

Q1

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Q1
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OpenCitations Citation Count
12

Source

Smart Materials and Structures

Volume

31

Issue

10

Start Page

105022

End Page

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CrossRef : 16

Scopus : 19

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Mendeley Readers : 9

SCOPUS™ Citations

19

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Web of Science™ Citations

17

checked on Feb 03, 2026

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