2023
DOI: 10.1002/pc.27667
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Piezoelectric properties of PVDF‐TrFE/BaTiO3 composite foams with different contents of TrFE units

Abstract: Piezoelectric (PE) materials play an important role in the emerging field of micro and wearable electronics. Achieving high PE response is a key feature for their use in energy harvesting and sensing systems. In this study, highly porous lightweight composite foams composed of PVDF‐TrFE (70/30 and 80/20 mol%) and different BaTiO3 content (5, 10, and 20 wt%) are prepared by thermally induced phase separation method. The PE foams were structurally and thermally examined by using Fourier‐transform infrared spectr… Show more

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Cited by 6 publications
(1 citation statement)
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References 47 publications
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“…To overcome this, reinforcing nanomaterials inside the PVDF is carried out to boost the overall piezoelectric behavior of the resulting composite. Various types of fillers, such as WO 3 , 6 ZnO, [7][8][9][10][11] BaTiO 3 , [12][13][14] rGO, 15,16 and PZT 17,18 were used by the researchers as a reinforcement to enhance the piezoelectric response of the polymer matrix. TiO 2 nanofillers possess a large dipole moment (6.33D), which enhances β phase content of PVDF through dipole interactions.…”
Section: Introductionmentioning
confidence: 99%
“…To overcome this, reinforcing nanomaterials inside the PVDF is carried out to boost the overall piezoelectric behavior of the resulting composite. Various types of fillers, such as WO 3 , 6 ZnO, [7][8][9][10][11] BaTiO 3 , [12][13][14] rGO, 15,16 and PZT 17,18 were used by the researchers as a reinforcement to enhance the piezoelectric response of the polymer matrix. TiO 2 nanofillers possess a large dipole moment (6.33D), which enhances β phase content of PVDF through dipole interactions.…”
Section: Introductionmentioning
confidence: 99%