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Localized Surface Plasmon Resonance Gas Sensor Based on Molecularly Imprinted Polymer Coated Au Nano-Island Films: Influence of Nanostructure on Sensing Characteristics

机译:基于分子印迹聚合物包覆的金纳米岛膜的局部表面等离子体共振气体传感器:纳米结构对传感特性的影响

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摘要

A localized surface plasmon resonance gas sensor based on Au nano-island films coated with molecularly imprinted polymer (MIP) layer was developed to selectively detect terpene vapor emitted from plants. Au nano-islands were deposited on a glass substrate through repeated Au sputtering and annealing. The MIP layer was coated on Au nano-island films by spin-coating a pre-polymerized solution containing methacrylic acid as monomer, ethylene glycol dimethylacrylate as cross-linker, and -pinene as the template molecule. The influence of nanostructure on the refractive index (RI) sensing characteristics was mainly investigated in this paper. The result demonstrated that the structure of Au nano-island films could be controlled by Au sputtering-annealing cycle. Increase in the sputtering-annealing cycle induced the size increase and the inter-particle distance decrease of Au nano-island films. In addition, spectral red shift, decrease in transmittance, and increase in absorbance were observed under this procedure as well. The typical RI sensing evaluation parameters , , and achieved the maximum values: 9.75 nm, and 9%, 0.42 under 3 and 18 Au sputtering-annealing cycles. Au nano-island films under 3 and 18 Au sputtering-annealing cycles were coated with the MIP, and the response of MIP-coated Au nano-island sensor to -pinene vapor was verified to be fast, reversible, and reproducible.
机译:开发了一种基于Au纳米岛薄膜的局部表面等离子体激元共振气体传感器,该薄膜涂有分子印迹聚合物(MIP)层,可选择性地检测植物排放的萜烯蒸气。通过重复的Au溅射和退火将Au纳米岛沉积在玻璃基板上。通过旋涂包含甲基丙烯酸作为单体,乙二醇二甲基丙烯酸甲酯作为交联剂和--烯作为模板分子的预聚合溶液,将MIP层涂覆在Au纳米岛膜上。本文主要研究了纳米结构对折射率(RI)传感特性的影响。结果表明,通过金溅射退火循环可以控制金纳米岛膜的结构。溅射退火周期的增加引起金纳米岛膜的尺寸增大和粒子间距离减小。另外,在该程序下也观察到光谱红移,透射率降低和吸光度增加。典型的RI感测评估参数,在3和18 Au溅射退火循环下,达到了最大值:9.75 nm,9%,0.42。在3和18个Au溅射退火循环下的Au纳米岛薄膜涂了MIP,并证明了MIP涂覆的Au纳米岛传感器对pine烯蒸气的响应是快速,可逆的和可重现的。

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