Sánchez-Romate Xoan F, Sans Alejandro, Jiménez-Suárez Alberto, Campo Mónica, Ureña Alejandro, Prolongo Silvia G
Materials Science and Engineering Area, Escuela Superior de Ciencias Experimentales y Tecnología, Universidad Rey Juan Carlos, Calle Tulipán s/n, 28933 Móstoles, Madrid, Spain.
Nanomaterials (Basel). 2020 Dec 5;10(12):2431. doi: 10.3390/nano10122431.
A performance mapping of GNP/epoxy composites was developed according to their electromechanical and electrothermal properties for applications as strain sensors and Joule heaters. To achieve this purpose, a deep theoretical and experimental study of the thermal and electrical conductivity of nanocomposites has been carried out, determining the influence of both nanofiller content and sonication time. Concerning dispersion procedure, at lower contents, higher sonication times induce a decrease of thermal and electrical conductivity due to a more prevalent GNP breakage effect. However, at higher GNP contents, sonication time implies an enhancement of both electrical and thermal properties due to a prevalence of exfoliating mechanisms. Strain monitoring tests indicate that electrical sensitivity increases in an opposite way than electrical conductivity, due to a higher prevalence of tunneling mechanisms, with the 5 wt.% specimens being those with the best results. Moreover, Joule heating tests showed the dominant role of electrical mechanisms on the effectiveness of resistive heating, with the 8 wt.% GNP samples being those with the best capabilities. By taking the different functionalities into account, it can be concluded that 5 wt.% samples with 1 h sonication time are the most balanced for electrothermal applications, as shown in a radar chart.
根据其机电和电热性能,开发了用于应变传感器和焦耳加热器应用的GNP/环氧树脂复合材料的性能映射图。为实现这一目的,对纳米复合材料的热导率和电导率进行了深入的理论和实验研究,确定了纳米填料含量和超声处理时间的影响。关于分散过程,在较低含量下,较长的超声处理时间会导致热导率和电导率降低,这是由于更普遍的GNP破碎效应。然而,在较高的GNP含量下,超声处理时间会由于剥离机制的普遍存在而导致电学和热学性能的增强。应变监测测试表明,由于隧道效应机制更为普遍,电灵敏度的增加方式与电导率相反,5 wt.%的试样效果最佳。此外,焦耳加热测试表明电机制对电阻加热效果起主导作用,8 wt.%的GNP样品能力最佳。考虑到不同的功能,可以得出结论,如雷达图所示,超声处理1小时的5 wt.%样品在电热应用中最为平衡。