2022
DOI: 10.1149/10701.14675ecst
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A Review on Electrospun PVDF-Doped Metal Oxide Nanoparticles for Sensor Applications

Abstract: Among the many fluoropolymers, polyvinylidiene fluoride (PVDF) has been well-known since 1960s and is preferred for various electronic applications owing to its lower cost, inordinate mechanical properties, and tunable polymorphism. It is well known that PVDF exhibits five different crystalline polymorphs (α). Among all, β-crystalline phase is the most important with excellent piezoelectric, ferroelectric, and pyroelectric properties.Metal oxide nanoparticles (MO-NPs) are used in diverse applications, aided by… Show more

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Cited by 4 publications
(2 citation statements)
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“…Compared with the piezoelectric polymer, the inorganic piezoelectric ceramic particles have high piezoelectric constant and low breakdown strength. Therefore, through adding piezoelectric ceramics powder into polymers, the composite shows high piezoelectric coefficient and low poling field (Hema Malini et al, 2022). Compared with individual piezoelectric components, piezoelectric composite materials can overcome the temperature Crystalline unit cell and microstructure of piezoelectric materials.…”
Section: Piezoelectric Polymers and Compositesmentioning
confidence: 99%
“…Compared with the piezoelectric polymer, the inorganic piezoelectric ceramic particles have high piezoelectric constant and low breakdown strength. Therefore, through adding piezoelectric ceramics powder into polymers, the composite shows high piezoelectric coefficient and low poling field (Hema Malini et al, 2022). Compared with individual piezoelectric components, piezoelectric composite materials can overcome the temperature Crystalline unit cell and microstructure of piezoelectric materials.…”
Section: Piezoelectric Polymers and Compositesmentioning
confidence: 99%
“…The topic of piezoelectric polymers has been reviewed numerously from different points of view (Ju et al, 2023;Kalimuldina et al, 2020a;L. Lu, Ding, Liu, & Yang, 2020;Mahapatra et al, 2021;Malini, Indumathy, Gunasekhar, & Prabu, 2022;Megdich et al, 2023;Mohammadpourfazeli et al, 2023;Fatemeh Mokhtari, Azimi, Salehi, Hashemikia, & Danti, https://doi.org/10.37819/nanofab.008.1775 Nanofabrication (2023), 8 | 3 2021; Smith & Kar-Narayan, 2022;Surmenev et al, 2019;Tuloup et al, 2019;X. Wan et al, 2023;L.…”
Section: Introductionmentioning
confidence: 99%