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首页> 外文期刊>Nanomaterials >Piezoelectric Effect and Electroactive Phase Nucleation in Self-Standing Films of Unpoled PVDF Nanocomposite Films
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Piezoelectric Effect and Electroactive Phase Nucleation in Self-Standing Films of Unpoled PVDF Nanocomposite Films

机译:非极化PVDF纳米复合薄膜自立式薄膜的压电效应和电活性相成核

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Novel polymer-based piezoelectric nanocomposites with enhanced electromechanical properties open new opportunities for the development of wearable energy harvesters and sensors. This paper investigates how the dissolution of different types of hexahydrate metal salts affects β -phase content and piezoelectric response (d 33 ) at nano- and macroscales of polyvinylidene fluoride (PVDF) nanocomposite films. The strongest enhancement of the piezoresponse is observed in PVDF nanocomposites processed with Mg(NO 3 ) 2 ?6H 2 O. The increased piezoresponse is attributed to the synergistic effect of the dipole moment associated with the nucleation of the electroactive phase and with the electrostatic interaction between the CF 2 group of PVDF and the dissolved salt through hydrogen bonding. The combination of nanofillers like graphene nanoplatelets or zinc oxide nanorods with the hexahydrate salt dissolution in PVDF results in a dramatic reduction of d 33 , because the nanofiller assumes a competitive role with respect to H-bond formation between PVDF and the dissolved metal salt. The measured peak value of d 33 reaches the local value of 13.49 pm/V, with an average of 8.88 pm/V over an area of 1 cm 2 . The proposed selection of metal salt enables low-cost production of piezoelectric PVDF nanocomposite films, without electrical poling or mechanical stretching, offering new opportunities for the development of devices for energy harvesting and wearable sensors.
机译:具有增强的机电性能的新型聚合物基压电纳米复合材料为可穿戴式能量收集器和传感器的开发提供了新的机遇。本文研究了聚偏二氟乙烯(PVDF)纳米复合膜在纳米尺度和宏观尺度下,不同类型的六水合物金属盐的溶解如何影响β相含量和压电响应(d 33)。在用Mg(NO 3)2?6H 2 O处理的PVDF纳米复合材料中观察到了压电响应的最强增强。压电响应的增加归因于偶极矩与电活性相的成核以及静电相互作用相关的协同效应。 PVDF的CF 2基团和溶解的盐之间通过氢键键合纳米填料(例如石墨烯纳米片或氧化锌纳米棒)与六水合物盐在PVDF中的溶解作用相结合,导致d 33急剧降低,因为纳米填料在PVDF与溶解的金属盐之间的氢键形成方面起竞争作用。测得的d 33的峰值达到13.49 pm / V的局部值,在1 cm 2的面积上平均值为8.88 pm / V。建议的金属盐选择可以低成本生产压电PVDF纳米复合膜,而无需进行电极化或机械拉伸,这为开发用于能量收集和可穿戴传感器的设备提供了新的机会。

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