β-Phase Enhancement of Force Spun Composite Nanofibers for Sensing Applications

Author:

Aguirre-Corona Renato Wenceslao1,Del Ángel-Sánchez Karina1,Ulloa-Castillo Nicolás Antonio2ORCID,Rodríguez-Salinas Juan José3ORCID,Olvera-Trejo Daniel1ORCID,Perales-Martínez Imperio Anel1ORCID,Martínez-Romero Oscar1ORCID,Elías-Zúñiga Alex1

Affiliation:

1. Institute of Advanced Materials for Sustainable Manufacturing, Tecnologico de Monterrey, Av. Eugenio Garza Sada Sur 2501, Monterrey 64849, N.L., Mexico

2. Center for Innovation in Digital Technologies, School of Engineering and Sciences, Tecnologico de Monterrey, Av. Eugenio Garza Sada Sur 2501, Monterrey 64849, N.L., Mexico

3. School of Engineering and Sciences, Tecnologico de Monterrey, Av. Eugenio Garza Sada Sur 2501, Monterrey 64849, N.L., Mexico

Abstract

In this study, a piezoelectric harvesting device was developed using polyvinylidene fluoride (PVDF) nanofibers reinforced with either BaTiO3 nanoparticles or graphene powder. BaTiO3 nanoparticles were synthesized through the sol-gel method with an average size of approximately 32 nm. The PVDF nanofibers, along with the nanoparticle composites in an acetone-N,N-dimethylformamide mixture, were produced using a centrifugal Forcespinning™ machine, resulting in a heterogeneous arrangement of fiber meshes, with an average diameter of 1.6 μm. Experimental tests revealed that the electrical performance of the fabricated harvester reached a maximum value of 35.8 Voc, demonstrating the potential of BaTiO3/ PVDF-based piezoelectric devices for designing wearable applications such as body-sensing and energy-harvesting devices.

Funder

Consejo Nacional de Ciencia y Tecnologia

Institute of Advanced Materials for Sustainable Manufacturing

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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