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        Piezoelectric Characteristics of Electrospun PVDF as a Function of Phase-Separation Temperature and Metal Salt Content

        가줄라 프라사드,Ponnan Sathiyanathan,Arun Anand Prabu,김갑진 한국고분자학회 2017 Macromolecular Research Vol.25 No.10

        In this paper, the crystallinity changes in polyvinylidene fluoride (PVDF) as function of varying phase-separation temperatures (0 to 90 oC) and chloride salts (BaCl2, CaCl2, CoCl2, NaCl, SnCl2, N2H6Cl2) were investigated. FTIR quantitative analysis showed higher β-crystalline and lower α-crystalline content for 70oC phase-separated PVDF and 70 oC phase-separated PVDF-CaCl2 (15wt%) samples. XRD and DSC studies also confirmed the influence of 70 oC phase-separation temperature and CaCl2 salt in improving the β-crystallinity in PVDF compared to the neat PVDF sample. Since higher β-crystalline content is favoured for use in piezoelectric applications, these two sample preparation conditions were optimized for use in piezoelectric studies. Electrospun nanowebs of the selected samples were measured for their piezoelectric output signals under applied pressure of 1 kgf and released periodically at 0.5 Hz. From the peak-to-peak output voltage, 70 oC phase-separated PVDF-CaCl2 sample exhibited significantly higher output voltage (+0.89 V) compared to neat PVDF (+0.48 V) and 70 oC phase-separated PVDF (+0.53 V) samples. These results conclude that the combinative effect of phase-separation temperature and metal salt addition plays a vital role in improving the piezoelectric characteristics of PVDF, which signifies the importance of this study.

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