Microporous polyvinylidene fluoride film with dense surface enables efficient piezoelectric conversion

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Abstract

We demonstrate that asymmetric porous polyvinylidene fluoride (PVDF) film, with pores mostly distributed in the bulk but not at the surfaces, can be used as a highly efficient piezoelectric energy generation device. For such microporous PVDF film with dense or pore-free surface, piezoelectric theory shows the efficiency of energy conversion by piezoelectric device depends upon the structure compressibility. Film mechanical properties can be controlled by dispersing micro-scale pores in a polymer matrix with a dense top layer. Piezoelectric output is enhanced by optimization of PVDF micro-structure and electromechanical coupling efficiency. The power output increased three folds with a designed three-dimensional asymmetric porous structure as compared to solid film.

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APA

Chen, D., & Zhang, J. X. J. (2015). Microporous polyvinylidene fluoride film with dense surface enables efficient piezoelectric conversion. Applied Physics Letters, 106(19). https://doi.org/10.1063/1.4921007

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