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The influence of hydrogen bonding on the dielectric constant and the piezoelectric energy harvesting performance of hydrated metal salt mediated PVDF films

机译:氢键对水合金属盐介导的PVDF薄膜介电常数和压电能量收集性能的影响

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摘要

Polyvinylidene fluoride (PVDF) films are filled with various mass fractions (wt%) of hydrated metal salt (MgCl2 center dot 6H(2)O) (Mg-salt) to fabricate high performance piezoelectric energy harvesters (PEHs). They deliver up to 4 V of open circuit voltage by simply repeated human finger imparting (under a pressure of similar to 4.45 kPa) and also generate sufficient power to turn on at least ten commercial blue light emitting diodes (LEDs) instantly. The enhanced piezo-response is attributed to the combined effect of the change in the inherent dipole moment of the electroactive phase containing PVDF itself and H-bonding arising between the Mg-salt filler and PVDF via electrostatic interactions. Furthermore, it also successfully charged the capacitors, signifying practical applicability as a piezoelectric based energy harvester power source. UV-visible optical absorption spectral analysis revealed the possibility to estimate a change in the optical band gap value at different concentrations of Mg-salt filler added PVDF films that possess a useful methodology where the Mg-salt can be used as an optical probe. In addition dielectric properties have been studied to understand the role of molecular kinetic and interfacial polarization occurs in H-bond PVDF films at different applied frequencies at room temperature.
机译:聚偏二氟乙烯(PVDF)膜填充有各种质量分数(wt%)的水合金属盐(MgCl2中心点6H(2)O)(镁盐),以制造高性能压电能量收集器(PEHs)。它们通过简单重复的人手指施加(在接近4.45 kPa的压力下)提供高达4 V的开路电压,并且还产生足够的功率以立即打开至少十个商用蓝色发光二极管(LED)。增强的压电响应归因于包含PVDF本身的电活性相的固有偶极矩的变化和Mg盐填料与PVDF之间通过静电相互作用产生的H键的组合效应。此外,它还成功地对电容器进行了充电,这表明它可作为基于压电的能量收集器电源实际应用。紫外可见光吸收光谱分析表明,可以估算在添加了镁盐填料的不同浓度的PVDF膜上的光学带隙值的变化,该膜具有有用的方法,可以将镁盐用作光学探针。另外,已经研究了介电性质以了解分子动力学和界面极化在室温下不同施加频率的H键PVDF膜中发生的作用。

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