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Enhanced dielectric and piezoelectric properties of Fe-doped ZnO/PVDF-TrFE composite films

机译:Fe掺杂ZnO / PVDF-TRFE复合膜的增强介电和压电性能

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摘要

Free-standing flexible Fe-doped ZnO(1-x) F-(x) O)/PVDF-TrFE nanocomposite films were prepared via solvent casting method with a constant filler/polymer ratio. The influence of Fe concentration (x = 0.01, 0.03 and 0.05) made no significant change in the crystalline beta-phase of the composite films as confirmed from XRD, FTIR and DSC studies. Maximum enhancement in the dielectric and ferroelectric behaviour was observed for the composite films with x = 0.05 showing a dielectric permittivity of 21.03 at 1 kHz and a remnant polarization of 0.125 mu C/cm(2). These enhanced properties were attributed to the reduced crystal size of the nanoparticles, which affects the interface space polarization and the effective volume of composite films. Finally, the demonstration of enhanced piezoelectric properties of the composite film (x = 0.05) with similar to 7 V output voltage under continuous finger tapping and driving LEDs makes it a potential device for energy harvesting applications.
机译:通过具有恒定填料/聚合物比的溶剂铸造方法制备独立式柔性Fe掺杂的ZnO(1-X)F-(X)O)/ PVDF-TRFE纳米复合膜。 Fe浓度(x = 0.01,0.03和0.05)的影响在XRD,FTIR和DSC研究中证实的复合膜的结晶β相没有显着变化。 对于具有X = 0.05的复合膜,观察到电介质和铁电行为中的最大增强,显示在1kHz下的介电常数21.03和0.125μC/ cm(2)的残余偏振。 这些增强的性质归因于纳米颗粒的晶体尺寸的降低,影响界面空间偏振和复合膜的有效体积。 最后,在连续手指攻丝和驱动LED下具有类似于7 V输出电压的复合膜(x = 0.05)的增强压电性能的证明使其成为能量收集应用的潜在装置。

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