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2D SnO_2 nanosheet/PVDF composite based flexible, self-cleaning piezoelectric energy harvester

机译:基于二维SnO_2纳米片/ PVDF复合材料的柔性自清洁压电能量收集器

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Flexible piezoelectric nanogenerators have been considered as the most promising candidates in recent years for powering the portable, bendable, and wearable electronics devices by scavenging low frequency biomechanical energy. This work reports an analysis of remarkable output power enhancement of a human-body motion based piezoelectric nanogenerator comprising of self-polarized 2D SnO2 nanosheet/poly(vinylidene fluoride) (PVDF) nanocomposite. Structural, mechanical, thermal as well as piezoelectric properties of the composites were studied rigorously, which proved that 5 wt% SnO2 nanosheet/PVDF composite is the most promising one for nanogenerator applications. The inorganic-organic 2D SnO2 nanosheet/PVDF composite based piezoelectric nanogenerators (PSNG) were found to produce outstanding power output due to the gentle human finger imparting with a maximum voltage of 42 V and current density of 6.25 pkcm-2. The output power density of the PSNG reached 4900 W.m(-3) with an efficiency c.a. 16.3%. The obtained output of the reported nanogenerator is in well agreement with the fundamental piezoelectric theory. The improved performance of the self-polarized composite can be attributed to the incorporation of homogeneously distributed 2D SnO2 nanosheets (2D SnO2 NS) having high surface area, which enhances the electroactive beta phase contain in PVDF composites as well as piezoelectric properties. The electrical energy (a.c.) generated from the nanogenerator due to gentle human finger imparting was directly utilized to illuminate 85 numbers commercial LEDs and to charge capacitors rapidly through a bridge rectifier. A hydrophobic 2D SnO2 nanosheet/PVDF composite film (static contact angle of water drop 82.6) was wrapped on the fabricated nanogenerator to attain self-cleaning feature of the PSNG, making the device water and dirt resistive. This work explores a new prospect for self-cleaning Gr-IV oxide/PVDF based high-efficiency, high power density energy harvester scavenging biomechanical energy for realizing next generation flexible self-powered electronics systems.
机译:近年来,柔性压电纳米发电机被认为是通过清除低频生物机械能为便携式,可弯曲和可穿戴电子设备供电的最有前途的候选者。这项工作报告了对基于人体运动的压电纳米发电机的显着输出功率增强的分析,该压电纳米发电机包括自极化2D SnO2纳米片/聚偏二氟乙烯(PVDF)纳米复合材料。对复合材料的结构,机械,热以及压电性能进行了严格的研究,证明了5 wt%的SnO2纳米片/ PVDF复合材料是最有前途的纳米发电机。发现基于无机-有机2D SnO2纳米片/ PVDF复合材料的压电纳米发电机(PSNG)可产生出色的功率输出,这是由于温柔的人手指具有最大42 V的电压和6.25 pkcm-2的电流密度。 PSNG的输出功率密度达到4900 W.m(-3),效率为c.a。 16.3%。所报道的纳米发电机的输出与基本的压电理论非常吻合。自极化复合材料性能的改善可归因于掺入具有高表面积的均匀分布的2D SnO2纳米片(2D SnO2 NS),这增强了PVDF复合材料中包含的电活性β相以及压电性能。纳米发电机由于人的手指轻柔地施加而产生的电能(交流电)被直接用于照亮85个商用LED并通过桥式整流器快速为电容器充电。将疏水的二维SnO2纳米片/ PVDF复合膜(水滴的静态接触角为82.6)包裹在制成的纳米发生器上,以获得PSNG的自清洁功能,从而使该设备具有防水防污性。这项工作探索了基于自清洁Gr-IV氧化物/ PVDF的高效,高功率密度能量收集器清除生物机械能以实现下一代柔性自供电电子系统的新前景。

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