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Highly conductive natural rubber-graphene hybrid films prepared by solution casting and in situ reduction for solvent-sensing application

机译:溶液浇注和原位还原制备的高导电天然橡胶-石墨烯杂化薄膜,用于溶剂传感应用

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摘要

High-performance solvent sensors have extensive applications in many fields. In this work, we report a quite efficient method to fabricate electrically conductive natural rubber (NR)-reduced graphene oxide (RGO) hybrid films for solvent-sensing application. The RGO/NR hybrid films with three-dimensional continuous RGO networks were prepared by blending graphene oxide suspension with rubber latex, followed by solution casting and then in situ hydroiodic acid reduction. The electrical conductivity of hybrid film was as high as 49.3 S/m when filled with 5.00 vol RGO, and the film exhibited an extremely low percolation threshold of 0.31 vol. The solvent-sensitive properties were evaluated by detecting the variation in electrical resistance due to the swelling of NR matrix. It was noted that the RGO/NR hybrid films exhibited exceptional stimuli responses for organic solvents, however, with different sensing responses for different solvents. Due to the reconstruction of continuous RGO networks after solvent evaporation, the hybrid films performed an excellent repeatability for solvent sensitivity. Therefore, as intelligent materials, the conductive RGO/NR hybrid films have great potential applications in sensing fields.
机译:高性能溶剂型传感器在许多领域都有广泛的应用。在这项工作中,我们报告了一种非常有效的方法,用于制造用于溶剂传感应用的导电天然橡胶(NR)还原氧化石墨烯(RGO)杂化薄膜。采用氧化石墨烯悬浮液与橡胶胶乳共混,溶液浇注,再原位氢化碘酸还原,制备了具有三维连续RGO网络的RGO/NR杂化薄膜。当填充5.00 vol% RGO时,杂化薄膜的电导率高达49.3 S/m,并且该薄膜表现出极低的渗流阈值,为0.31 vol%。通过检测NR基体溶胀引起的电阻变化来评估溶剂敏感性。然而,RGO/NR混合薄膜对有机溶剂表现出特殊的刺激响应,对不同的溶剂具有不同的传感响应。由于溶剂蒸发后连续RGO网络的重建,混合薄膜在溶剂灵敏度方面具有出色的重复性。因此,导电RGO/NR混合薄膜作为智能材料,在传感领域具有巨大的应用潜力。

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