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纳米氧化锌修饰的ZnSnO作为聚偏氟乙烯基体中的高效填料:实现储能密度和效率的同步提高以及能量收集活性的改善

Nano-ZnO decorated ZnSnO as efficient fillers in PVDF matrixes: toward simultaneous enhancement of energy storage density and efficiency and improved energy harvesting activity.

作者信息

Sasmal Abhishek, Medda Samar Kumar, Devi P Sujatha, Sen Shrabanee

机构信息

Functional Materials and Devices Division, CSIR-Central Glass & Ceramic Research Institute, Kolkata-700032, India.

Specialty Glass Technology Division, CSIR-Central Glass & Ceramic Research Institute, Kolkata-700032, India.

出版信息

Nanoscale. 2020 Oct 22;12(40):20908-20921. doi: 10.1039/d0nr02057e.

Abstract

Here, we report the effect of ZnO decoration on ZnSnO3 fillers on the dielectric property, energy storage behaviour and mechanical energy harvesting performance of PVDF matrixes. More enhanced dielectric constant and reduction in dielectric loss were achieved in PVDF-ZnO@ZnSnO3 (PVDF-ZNZS) films than in PVDF-ZnSnO3 (PVDF-ZS) films for the same concentration of filler loading. Similarly, PVDF-ZNZS films showed simultaneous enhancement in electrical energy storage density and storage efficiency compared to PVDF-ZS composites. As all the constituent materials (PVDF, ZnSnO3 and ZnO) were piezoelectric, the resulting composite film showed improved piezoelectric energy harvesting performance too. After rectification, the output ac voltage was used to charge a 10 μF capacitor up to ∼5 V dc which was further used to light up some LEDs. Furthermore, in order to exhibit improved sensitive output, a hybrid piezo-tribo nanogenerator was fabricated which was demonstrated as a motion sensor, a weight sensor and a human body movement sensor as part of a real life application.

摘要

在此,我们报告了ZnO修饰的ZnSnO₃填料对聚偏氟乙烯(PVDF)基体的介电性能、储能行为和机械能收集性能的影响。对于相同浓度的填料负载,PVDF-ZnO@ZnSnO₃(PVDF-ZNZS)薄膜比PVDF-ZnSnO₃(PVDF-ZS)薄膜具有更高的介电常数和更低的介电损耗。同样,与PVDF-ZS复合材料相比,PVDF-ZNZS薄膜的电能存储密度和存储效率同时提高。由于所有组成材料(PVDF、ZnSnO₃和ZnO)都是压电材料,所得复合薄膜的压电能量收集性能也有所改善。经过整流后,输出的交流电压用于将一个10 μF的电容器充电至约5 V直流电压,该电压进一步用于点亮一些发光二极管。此外,为了表现出更高的灵敏输出,制备了一种混合压电-摩擦纳米发电机,它被证明可作为运动传感器、重量传感器和人体运动传感器,作为实际应用的一部分。

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