Synergistic effect of multi walled carbon nanotubes and reduced graphene oxides in natural rubber for sensing application

石墨烯 材料科学 剥脱关节 碳纳米管 拉曼光谱 复合材料 纳米复合材料 天然橡胶 弹性体 氧化物 聚合物 傅里叶变换红外光谱 透射电子显微镜 溶剂 复合数 化学工程 纳米技术 化学 有机化学 工程类 物理 光学 冶金
作者
Deepalekshmi Ponnamma,Kishor Kumar Sadasivuni,Michał Strankowski,Qipeng Guo,Sabu Thomas
出处
期刊:Soft Matter [Royal Society of Chemistry]
卷期号:9 (43): 10343-10343 被引量:161
标识
DOI:10.1039/c3sm51978c
摘要

Utilizing the electrical properties of polymer nanocomposites is an important strategy to develop high performance solvent sensors. Here we report the synergistic effect of multi walled carbon nanotubes (MWCNTs) and reduced graphene oxide (RGO) in regulating the sensitivity of the naturally occurring elastomer, natural rubber (NR). Composites were fabricated by dispersing CNTs alone and together with exfoliated RGO sheets (thermally reduced at temperatures of 200 and 600 °C ) in NR by a solution blending method. RGO exfoliation and the uniform distribution of fillers in the composites were studied by atomic force microscopy, Fourier transformation infrared spectroscopy, X-ray diffraction, transmission electron microscopy and Raman spectroscopy. The solvent sensitivity of the composite samples was noted from the sudden variation in electrical conductivity which was due to the breakdown of the filler networks during swelling in different solvents. It was found that the synergy between CNTs and RGO exfoliated at 200 °C imparts maximum sensitivity to NR in recognizing the usually used aromatic laboratory solvents. Mechanical and dynamic mechanical studies reveal efficient filler reinforcement, depending strongly on the nature of filler–elastomer interactions and supports the sensing mechanism. Such interactions were quantitatively determined using the Maier and Göritz model from Payne effect experiments. It is concluded that the polarity induced by RGO addition reduces the interactions between CNTs and ultimately results in the solvent sensitivity.
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