Synthesis of β, γ- PVDF through electrospinning for piezoelectric force sensing application.
Shubhanwita Saha and Dipayan Sanyal *
CSIR-Central Glass and Ceramic Research Institute, 196 Raja S. C. Mullick Road, Kolkata - 700032, India.
Carbon - Science and Technology 10/4 (2018) 51 - 57.
© Applied Science Innovations Private Limited, India.
Full Text (OPEN ACCESS): CST-317.pdf
Keywords: Polyvinylidene-jluoride (PVDF), electrospinning, piezoelectric force sensor; β, γ PVDF
Abstract: In the present study, PVDF nanofibers containing β and γ-phases have been
synthesized by electrospinning process. An experimental study was conducted for evaluating the
high temperature effects on sample precursor preparation as well as PVDF phase transition
(α=>β phase and α=> γ phase). High temperature melting process was employed to prepare
PVDF solution as precursor for electrospinning and a typical process condition was mainatained
to draw PVDF nanofiber. Synthesized fibers were characterized by fourier-transfonn infrared
spectroscopy (FTIR), field emission scanning electron microscopy (FE-SEM) and X-Ray
diffraction (XRD). To measure the sensing performance of the PVDF nanofibers, a piezoelectric
force sensor device was constructed using these fibers. The voltage vs current and voltage vs
time signals were recorded against calibrated loads using digital oscilloscope. More specifically,
it was established that precursors melted at 150°C temperature is essential for producing β+γ
mixed crystal based PVDF nanofibers which could generate signals of sufficiently high
amplitude at low applied forces consistent with the physical acoustic theory.