Polgar Lorenzo Massimo, Criscitiello Francesco, van Essen Machiel, Araya-Hermosilla Rodrigo, Migliore Nicola, Lenti Mattia, Raffa Patrizio, Picchioni Francesco, Pucci Andrea
Department of Chemical Engineering, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands.
Dutch Polymer Institute (DPI), P.O. Box 902, 5600 AX Eindhoven, The Netherlands.
Nanomaterials (Basel). 2018 Jan 23;8(2):58. doi: 10.3390/nano8020058.
Conductive rubber nanocomposites were prepared by dispersing conductive nanotubes (CNT) in thermoreversibly cross-linked ethylene propylene rubbers grafted with furan groups (EPM-g-furan) rubbers. Their features were studied with a strong focus on conductive and mechanical properties relevant for strain-sensor applications. The Diels-Alder chemistry used for thermoreversible cross-linking allows for the preparation of fully recyclable, homogeneous, and conductive nanocomposites. CNT modified with compatible furan groups provided nanocomposites with a relatively large tensile strength and small elongation at break. High and low sensitivity deformation experiments of nanocomposites with 5 wt % CNT (at the percolation threshold) displayed an initially linear sensitivity to deformation. Notably, only fresh samples displayed a linear response of their electrical resistivity to deformations as the resistance variation collapsed already after one cycle of elongation. Notwithstanding this mediocre performance as a strain sensor, the advantages of using thermoreversible chemistry in a conductive rubber nanocomposite were highlighted by demonstrating crack-healing by welding due to the joule effect on the surface and the bulk of the material. This will open up new technological opportunities for the design of novel strain-sensors based on recyclable rubbers.
通过将导电纳米管(CNT)分散在接枝有呋喃基团的热可逆交联乙丙橡胶(EPM-g-呋喃)中来制备导电橡胶纳米复合材料。对其特性进行了研究,重点关注与应变传感器应用相关的导电和机械性能。用于热可逆交联的狄尔斯-阿尔德化学方法能够制备完全可回收、均匀且导电的纳米复合材料。用相容的呋喃基团改性的碳纳米管为纳米复合材料提供了相对较高的拉伸强度和较小的断裂伸长率。含5 wt%碳纳米管(处于渗流阈值)的纳米复合材料的高灵敏度和低灵敏度变形实验显示,其对变形最初具有线性灵敏度。值得注意的是,只有新鲜样品的电阻率对变形呈现线性响应,因为在一个伸长循环后电阻变化就已经消失了。尽管作为应变传感器的性能一般,但通过展示材料表面和整体因焦耳效应而实现的焊接裂纹修复,突出了在导电橡胶纳米复合材料中使用热可逆化学方法的优势。这将为基于可回收橡胶的新型应变传感器设计开辟新的技术机遇。