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首页> 外文期刊>Journal of Sensors >Surface Plasmon Resonance Sensor to Detect n-Hexane in Palm Kernel Oil Using Polypyrrole Nanoparticles Reduced Graphene Oxide Layer
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Surface Plasmon Resonance Sensor to Detect n-Hexane in Palm Kernel Oil Using Polypyrrole Nanoparticles Reduced Graphene Oxide Layer

机译:使用聚吡咯纳米粒子还原氧化石墨氧化物层来检测棕榈籽油中N-己烷的正己烷

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摘要

Palm kernel oil was extracted using n-hexane. Rotary evaporator and oven were used to remove n-hexane from the oil. Measurement of n-hexane in low concentration is significant and interest subject. In this study, the concentration of n-hexane was measured using the surface plasmon resonance technique. In order to improve the sensitivity of surface plasmon resonance sensor, the polypyrrole nanoparticles decorated reduced graphene oxide (sensing layer) was prepared using the electrodeposition technique on the surface of gold film. Different concentration of n-hexane in isooctane and the palm kernel oil before and after purification was tested using sensing layer. The sensor limit was about 1?ppm. The results were matched with the gas chromatography results. The thickness and roughness of sensing layer were increased after the interaction with n-hexane which was obtained from atomic force microscopy.
机译:使用正己烷提取棕榈仁油。 旋转蒸发器和烘箱用于从油中除去正己烷。 低浓度下正己烷的测量是显着的和感兴趣的主题。 在该研究中,使用表面等离子体共振技术测量正己烷的浓度。 为了提高表面等离子体共振传感器的灵敏度,使用电沉积技术在金膜表面上制备滤色纳米颗粒装饰的氧化萘颗粒(感测层)。 使用感测层测试在异辛烷中的不同浓度的异辛烷和棕榈仁油中的N-己烷。 传感器限制约为1?ppm。 结果与气相色谱结果相匹配。 在与原子力显微镜中获得的N-己烷相互作用后,感测层的厚度和粗糙度增加。

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