Issue 6, 2014

Non-wrinkled, highly stretchable piezoelectric devices by electrohydrodynamic direct-writing

Abstract

Piezoelectric structures, in forms that allow mere in-surface deformations under large strains, are attractive for bio-integrated systems. Here, mechano-electrospinning (MES) is presented to direct-write straight nanofibers of polyvinylidene fluoride onto a prestrained poly(dimethylsiloxane) (PDMS) substrate, to position and polarize a piezoelectric nanofiber array in one-step. Wrinkled/non-wrinkled buckling modes are found when the substrates are released, and the morphology of the direct-written fiber proved the key to determine the buckling modes, which can be tuned precisely by MES parameters. The non-wrinkled, stretchable piezoelectric devices with a highly synchronized serpentine fiber array exhibit their in-surface deformation and stable piezoelectric performance up the failure strain of PDMS (∼110% in our study), which may be used as stretchable sensors and energy converters/providers.

Graphical abstract: Non-wrinkled, highly stretchable piezoelectric devices by electrohydrodynamic direct-writing

Supplementary files

Article information

Article type
Paper
Submitted
12 Nov 2013
Accepted
16 Dec 2013
First published
20 Dec 2013

Nanoscale, 2014,6, 3289-3295

Non-wrinkled, highly stretchable piezoelectric devices by electrohydrodynamic direct-writing

Y. Duan, Y. Huang, Z. Yin, N. Bu and W. Dong, Nanoscale, 2014, 6, 3289 DOI: 10.1039/C3NR06007A

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