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Development of silver nanorod array based fiber optic probes for SERS detection

机译:用于SERS检测的基于银纳米棒阵列的光纤探头的开发

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The development of intrinsic SERS fiber optic sensors, i.e., fiber optical sensors that also serve as SERS active platforms, is challenging in that an easy, robust method that integrates the SERS active platform with fiber optics is still largely missing. There is a trade-off between implementing optimal morphology of SERS active nanostructures for best enhancement effect and preserving optical transparency that allows maximum transmission of the excitation radiation and the detected signals. In the present work, highly sensitive and reproducible silver nanorod arrays (AgNRs) have been integrated to a fiber optic probe for SERS detection. The films underlying the AgNR coating have been tailored to allow maximum light transmission while maintaining optimal SERS activity. The intense spectral background from the probe fiber core is largely eliminated by using a GRIN lens to produce a tight focus of the incident radiation at the AgNR coating. The performance of the AgNR fiber optic probes has been evaluated in a forward scattering optical configuration using BPE and adenine. The low detection limit of BPE and adenine is 10~(-7) M. Reproducibility and sampling methods are also discussed.
机译:固有的SERS光纤传感器(即也可以用作SERS有源平台的光纤传感器)的开发具有挑战性,因为仍然很大程度上缺少将SERS有源平台与光纤集成在一起的简便,可靠的方法。在实现最佳增强效果的SERS活性纳米结构的最佳形态与保留允许最大程度地透射激发辐射和检测信号的光学透明性之间需要权衡。在当前的工作中,高灵敏度和可复制的银纳米棒阵列(AgNRs)已集成到用于SERS检测的光纤探针中。经过调整的AgNR涂层下面的薄膜可实现最大的透光率,同时保持最佳的SERS活性。通过使用GRIN透镜在AgNR涂层上产生入射辐射的紧密聚焦,可以很大程度上消除来自探头光纤芯的强光谱背景。已使用BPE和腺嘌呤在前向散射光学配置中评估了AgNR光纤探头的性能。 BPE和腺嘌呤的检测下限为10〜(-7)M。还讨论了重现性和取样方法。

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