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Evaluation of piezoelectric property of reduced graphene oxide (rGO)-poly(vinylidene fluoride) nanocomposites

机译:评估压电性能降低石墨烯氧化物(rGO)聚(偏二氟乙烯)纳米复合材料

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摘要

We improved the piezoelectric property of poly(vinylidene fluoride) (PVDF) by employing graphene. The reduced graphene oxide (rGO)-PVDF nanocomposites were prepared by a solution casting method and the rGO contents ranged from 0.0 wt% to 0.2 wt%. To induce the piezoelectric β-phase crystal structure, the nanocomposite films were drawn in a ratio of 4—5 and polarized by a step-wise poling method. To evaluate the piezoelectric property, the output voltages of the rGO-PVDF nanocomposite films were measured through extensive experimental vibration tests. The experimental results show that the rGO-PVDF nanocomposite film with 0.05 wt% rGO loading possesses the highest output voltage compared with other loadings, which is around 293% of that of the pure PVDF film. Moreover, it can be found that with the increase of the rGO content from 0 wt% to 0.2 wt%, the output voltage tends to have a peak at 0.05 wt%. The main reason for this phenomenon is that a more β-crystalline phase can be formed at those rGO loadings, as confirmed by XRD and FT-IR spectrum analyses.
机译:我们提高了压电性能聚偏二氟乙烯(PVDF)采用石墨烯。纳米复合材料是由一个解决方案铸造方法和范围从rGO内容0.0 wt % 0.2 wt %。β步晶体结构,纳米复合材料影片在4 - 5的比例和极化由一个步进式还原方法。压电特性,输出电压的rGO-PVDF纳米复合材料薄膜测量通过大量的实验振动测试。实验结果表明,rGO-PVDF纳米复合材料薄膜为0.05 wt % rGO加载拥有最高的输出电压进行比较与其他载荷的293%左右的纯粹的PVDF膜。与增加的内容从0 rGOwt % 0.2 wt %,输出电压往往峰值为0.05 wt %。现象是,更多的β晶相形成在这些rGO载荷,证实了XRD和红外光谱分析。

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