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AuthorKacem, Eya
AuthorAl-Ejji, Maryam
AuthorYempally, Swathi
AuthorPonnamma, Deepalekshmi ()
Available date2025-06-19T06:18:06Z
Publication Date2024
Publication NamePolymer Engineering and Science
ResourceScopus
Identifierhttp://dx.doi.org/10.1002/pen.26762
ISSN323888
URIhttp://hdl.handle.net/10576/65613
AbstractLayered transition metal dichalcogenides (TMDs) with high aspect ratios enhance the alignment of polymer chains and induce a preferred orientation of the polymeric crystallites when incorporated into polyvinylidene fluoride (PVDF). In addition to offering an effective charge-transfer mechanism, TMDs give PVDF more rigidity and piezoelectric qualities. This work reports the non-solvent induced phase separation (NIPS) introduced while developing the PVDF/MoS2 composites. During the NIPS, the PVDF chains become phase-separated, which induces high polarization in the PVDF matrix. Phase-separated PVDF/MoS2 composites show high porosity and charge distribution attributed to the enhanced piezoelectric output voltage. While the neat PVDF demonstrated very feeble output voltage generation, the hybrid composite containing 2 wt.% of MoS2/ZnO facilitated almost 20 times higher performance (peak-to-peak voltage of 2.4 V). This work yielded a phase-separated composite that finds uses in energy harvesting, sensors, and actuators, among other fields. Highlights: NIPS creates high-porosity composites with improved charge distribution. Layered TMDs improve charge-transfer mechanism and PVDF's electrical properties. 2 wt.% MoS2/ZnO exhibits nearly 20 times higher voltage generation than neat PVDF.
SponsorThis work was supported by the Qatar University Student Grant under QUST\u20101\u2010CAS\u20102023\u2010947. The statements made herein are solely the responsibility of the authors. The TEM, SEM, and EDAX were accomplished in the Central Laboratories Unit at Qatar University.
Languageen
PublisherJohn Wiley and Sons Inc
Subject2D nanomaterials
filler synergy
nanogenerator
piezoelectric
self-powering device
TitleEffect of layered transition metal dichalcogenide hybrid nanomaterials on the piezoelectric performance of non-solvent induced phase separated polyvinylidene fluoride
TypeArticle
Pagination3215-3226
Issue Number7
Volume Number64
dc.accessType Full Text


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