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Optimization of Au:CuO Nanocomposite Thin Films for Gas Sensing with High-Resolution Localized Surface Plasmon Resonance Spectroscopy

机译:Au的优化:CuO纳米复合薄膜用高分辨率局部等离子体共振光谱法的气体传感

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摘要

Gas sensing based on bulk refractive index (RI) changes, has been a challenging task for localized surface plasmon resonance (LSPR) spectroscopy, presenting only a limited number of reports in this field. In this work, it is demonstrated that a plasmonic thin film composed of Au nanoparticles embedded in a CuO matrix can be used to detect small changes (as low as 6 x 10(-5) RIU) in bulk RI of gases at room temperature, using a high-resolution LSPR spectroscopy system. To optimize the film's surface, a simple Ar plasma treatment revealed to be enough to remove the top layers of the film and to partially expose the embedded nanoparticles, and thus enhance the film's gas sensing capabilities. The treated sample exhibits high sensitivity to inert gases (Ar, N-2), presenting a refractive index sensitivity (RIS) to bulk RI changes of 425 nm/RIU. Furthermore, a 2-fold signal increase is observed for O-2, showing that the film is clearly more sensitive to this gas due to its oxidizing nature. The results showed that the Au:CuO thin film system is a RI sensitive platform able to detect inert gases, which can be more sensitive to detect noninert gases as O-2 or even other reactive species.
机译:基于批量折射率(RI)变化的气体感应是针对局部表面等离子体共振(LSPR)光谱的具有挑战性的任务,仅在该领域中呈现有限数量的报告。在这项工作中,证明由嵌入CuO基质中的Au纳米颗粒组成的等离子体薄膜可用于在室温下散装气体的块状气体中的少量变化(低至6×10(-5)RiU),使用高分辨率LSPR光谱系统。为了优化薄膜的表面,简单的AR等离子体处理显示足以去除膜的顶层并部分地暴露嵌入的纳米颗粒,从而提高薄膜的气体传感能力。处理过的样品对惰性气体(Ar,N-2)表现出高敏感性,呈现折射率敏感性(RIS)至425nm / Riu的散装Ri变化。此外,对于O-2,观察到2倍的信号增加,表明由于其氧化性质,薄膜显然对该气体敏感。结果表明,AU:CuO薄膜系统是能够检测惰性气体的RI敏感平台,这对检测非惰性气体作为O-2甚至其他反应性物种更敏感。

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