Flexible Energy Harvesting Device Based on Porous Piezoelectric Sponge

Dong Hun Heo, Dong Yeol Hyeon, Sung Cheol Park, Kwi Il Park

Research output: Contribution to journalArticlepeer-review

Abstract

Piezoelectric composite films which are enabled by inorganic piezoelectric nanomaterials-embedded polymer, have attracted enormous attention as a sustainable power source for low powered electronics, because of their ease of fabrication and flexible nature. However, the absorption of applied stress by the soft polymeric matrices is a major issue that must be solved to expand the fields of piezoelectric composite applications. Herein, a flexible and porous piezoelectric composite (piezoelectric sponge) comprised of BaTiO3 nanoparticles and polydimethylsiloxane was developed using template method to enhance the energy conversion efficiency by minimizing the stress that vanishes into the polymer matrix. In the porous structure, effective stress transfer can occur between the piezoelectric active materials in compression mode due to direct contact between the ceramic particles embedded in the pore-polymer interface. The piezoelectric sponge with 30 wt% of BaTiO3 particles generated an open-circuit voltage of ~12 V and a short-circuit current of ~150 nA. A finite element method-based simulation was conducted to theoretically back up that the piezoelectric output performance was effectively improved by introducing the sponge structure. Furthermore, to demonstrate the feasibility of pressure detecting applications using the BaTiO3 particles-embedded piezoelectric sponge, the composite was arranged in a 3 × 3 array and integrated into a single pressure sensor. The fabricated sensor array successfully detected the shape of the applied pressure.

Original languageEnglish
Pages (from-to)508-514
Number of pages7
JournalKorean Journal of Materials Research
Volume32
Issue number11
DOIs
StatePublished - 2022

Keywords

  • BaTiO
  • energy harvesting
  • nanocomposite
  • porous piezoelectric sponge
  • sensor array

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