Thermoreversibly Cross-Linked EPM Rubber Nanocomposites with Carbon Nanotubes

被引:13
作者
Polgar, Lorenzo Massimo [1 ,2 ]
Criscitiello, Francesco [3 ]
van Essen, Machiel [1 ]
Araya-Hermosilla, Rodrigo [1 ]
Migliore, Nicola [1 ]
Lenti, Mattia [1 ,3 ]
Raffa, Patrizio [1 ]
Picchioni, Francesco [1 ,2 ]
Pucci, Andrea [3 ]
机构
[1] Univ Groningen, Dept Chem Engn, Nijenborgh 4, NL-9747 AG Groningen, Netherlands
[2] DPI, POB 902, NL-5600 AX Eindhoven, Netherlands
[3] Univ Pisa, Dept Chem & Ind Chem, Via Moruzzi 13, I-56124 Pisa, Italy
来源
NANOMATERIALS | 2018年 / 8卷 / 02期
关键词
strain sensor; rubber nanocomposite; thermoreversible cross-linking; Joule effect; crack-healing; DIELS-ALDER CHEMISTRY; CONDUCTIVE POLYMER COMPOSITES; STRAIN; LINKING; STEP; PIEZORESISTIVITY; PERCOLATION; ELASTOMER; NETWORKS; SENSORS;
D O I
10.3390/nano8020058
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
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.
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页数:18
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