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Effect of degree of crosslinking and polymerization of 3D printable polymer/ionic liquid composites on performance of stretchable piezoresistive sensors

机译:三维可印刷聚合物/离子液体复合材料交联和聚合程度的影响对拉伸压阻传感器的性能

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摘要

Ionic liquid (IL)/polymer composites (1-ethyl-3-methyl-imidazolium tetrafluoroborate (EMIMBF4)/2-[[(butylamino) carbonyl] oxy] ethyl acrylate (BACOEA)) were fabricated to use as sensing materials for stretchable piezoresistive tactile sensors. The detectability of the IL/polymer composites was enhanced because the ionic transport properties of EMIMBF4 in the composites were improved by the synergic actions between the coordinate sites generated by the local motion of BACOEA chain segments under enough activation energy. The performance of the piezoresistive sensors was investigated with the degree of crosslinking and polymerization of the IL/polymer composites. As the compressive strain was increased, the distance between two electrodes decreased, and the motion of polymer chains and IL occurred, resulting in a decrease in the electrical resistance of the sensors. We have confirmed that the sensitivity of the sensors are affected by the degree of crosslink and polymerization of the IL/polymer composites. In addition, all of the materials (skins, sensing material, and electrode) used in this study are photo-curable, and thus the stretchable piezoresistive tactile sensors can be successfully fabricated by 3D printing.
机译:采用离子液体(IL)/聚合物复合材料(1-乙基-3-甲基 - 咪唑鎓四氟硼酸盐(EMIMBF4)/ 2 - [[(丁基氨基)羰基]氧丙烯酸酯(BACOEA)),用作可拉伸压阻的传感材料触觉传感器。通过通过在足够的活化能量下的局部运动产生的局部运动产生的坐标位之间的协同作用,改善了IL /聚合物复合材料的可检测性。采用IL /聚合物复合材料的交联和聚合程度来研究压阻传感器的性能。随着压缩菌株的增加,两个电极之间的距离降低,并且聚合物链和IL的运动发生,导致传感器的电阻降低。我们已经证实,传感器的敏感性受到IL /聚合物复合材料的交联和聚合程度的影响。另外,本研究中使用的所有材料(皮肤,感测材料和电极)是光固化,因此可以通过3D打印成功制造可拉伸的压阻性触觉传感器。

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