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Synthesis and Characterization of Multi-Walled Carbon Nanotube/Graphene Nanoplatelet Hybrid Film for Flexible Strain Sensors

机译:柔性应变传感器的多壁碳纳米管/石墨烯纳米片杂化膜的合成与表征

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摘要

Graphene nanoplatelet (GNP) and multi-walled carbon nanotube (MWCNT) hybrid films were prepared with the aid of surfactant Triton X-100 and sonication through a vacuum filtration process. The influence of GNP content ranging from 0 to 50 wt.% on the mechanical and electrical properties was investigated using the tensile test and Hall effect measurement, respectively. It showed that the tensile strength of the hybrid film is decreasing with the increase of the GNP content while the electrical conductivity exhibits an opposite trend. The effectiveness of the MWCNT/GNP hybrid film as a strain sensor is presented. The specimen is subjected to a flexural loading, and the electrical resistance measured by a two-point probe method is found to be function of applied strain. Experimental results demonstrate that there are two different linear strain-sensing stages (0–0.2% and 0.2–1%) in the resistance of the hybrid film with applied strain. The strain sensitivity is increasing with the increase of the GNP content. In addition, the repeatability and stability of the strain sensitivity of the hybrid film were conformed through the cyclic loading–unloading tests. The MWCNT/GNP hybrid film shows promising application for strain sensing.
机译:借助表面活性剂Triton X-100制备石墨烯纳米片(GNP)和多壁碳纳米管(MWCNT)杂化膜,并通过真空过滤工艺进行超声处理。分别使用拉伸试验和霍尔效应测量研究了GNP含量在0至50 wt。%范围内对机械和电气性能的影响。结果表明,随着GNP含量的增加,杂化膜的拉伸强度逐渐降低,而电导率却呈现相反的趋势。提出了MWCNT / GNP混合膜作为应变传感器的有效性。样品经受弯曲载荷,并且发现通过两点探针法测量的电阻是所施加应变的函数。实验结果表明,在施加应变的情况下,杂化膜的电阻有两个不同的线性应变感测阶段(0–0.2%和0.2–1%)。应变敏感性随着GNP含量的增加而增加。此外,杂化膜的应变敏感性的可重复性和稳定性通过循环加载-卸载测试得到证实。 MWCNT / GNP混合膜在应变传感方面显示出广阔的应用前景。

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