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Positive piezoresistive behavior of electrically conductive alkyl-functionalized graphene/ polydimethylsilicone nanocomposites

机译:导电烷基官能化石墨烯/聚二甲基硅氧烷纳米复合材料的正压阻行为

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摘要

Piezoresistive nanocomposites using alkyl-functionalized graphene (G-ODA) as a conducting filler and polydimethylsilicone (PDMS) as the polymer matrix were prepared and their piezoresistivity behavior was investigated. One-pot synthesis of G-ODA from graphite oxide and octadecylamine improved its dispersion in nonpolar xylene and PDMS with low surface free energy. Results show that the graphene nanosheets were homogeneously dispersed in the PDMS matrix and an ultra-low percolation threshold (0.63 vol%) of the composites was obtained. The G-ODA/PDMS composites with 1.19 vol% content of G-ODA show a remarkable positive piezoresistivity of high sensitivity (R/R0 > 400 under the pressure of 1.2 MPa), excellent repeatability, small hysteresis, and long-term durability. Under uniaxial compression, the resistance of the composites exponentially increased with the pressure. The resistance-pressure curves remain nearly unchanged after 1000 loading-unloading cycles. The results suggest that the G-ODA/PDMS nanocomposites provide a new route toward fabrication of soft piezoresistive sensors with high performance.
机译:制备了以烷基官能化石墨烯(G-ODA)为导电填料,以聚二甲基硅氧烷(PDMS)为聚合物基体的压阻纳米复合材料,研究了它们的压阻行为。由一氧化碳和十八烷基胺一锅法合成G-ODA改善了它在非极性二甲苯和PDMS中的分散性,且表面自由能低。结果表明,石墨烯纳米片均匀分散在PDMS基质中,获得了复合材料的超低渗透阈值(0.63 vol%)。 G-ODA含量为1.19 vol%的G-ODA / PDMS复合材料表现出显着的正压敏电阻率,具有很高的灵敏度(在1.2 MPa的压力下R / R0> 400),出色的重复性,小的磁滞和长期耐用性。在单轴压缩下,复合材料的电阻随压力呈指数增加。电阻-压力曲线在1000次加载-卸载循环后几乎保持不变。结果表明,G-ODA / PDMS纳米复合材料为制造高性能的软压阻传感器提供了一条新途径。

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