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A nanoimprinted plasmonic substrate for both local preconcentration and SERS detection

机译:用于局部预富集和SERS检测的纳米压印等离子体衬底

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In this paper, we present a novel plasmonic substrate for both local preconcentration and surface enhanced Raman scattering (SERS) detection. The plasmonic substrate is fabricated by nanoimprint process and then overlaid a thin silver film to adjust the surface plasmon resonance wavelength. Both photothermal conversion and SERS-active wavelength are designed for He-Ne Laser. The measurement process includes three steps. First of all, local concentration isrnperformed by laser induced heating on the plasmonic substrate (over 100℃) to create a small bubble in high power mode (10mW). Then turn off the laser, the target analyte (Rhodamine 6G solution) will concentrate to the center as the bubble disappeared. Finally, the SERS spectra are taken in low power mode (lmW). The intensity of SERS signal at the concentrated region is an order of magnitude larger than the untreated region. The repeatability of this preconcentration process makes it a good candidate to amplify small SERS signals especially for trace detections.
机译:在本文中,我们提出了一种用于局部预浓缩和表面增强拉曼散射(SERS)检测的新型等离子体激元底物。等离子基板通过纳米压印工艺制造,然后覆盖一层银薄膜以调节表面等离子共振波长。光热转换和SERS活性波长均设计用于He-Ne激光器。测量过程包括三个步骤。首先,在高功率模式(10mW)下,通过在等离子体衬底上(超过100℃)进行激光诱导加热来实现局部浓度,从而产生一个小气泡。然后关闭激光,随着气泡消失,目标分析物(若丹明6G溶液)将集中到中心。最后,SERS光谱以低功率模式(lmW)拍摄。集中区域的SERS信号强度比未处理区域大一个数量级。这种预浓缩过程的可重复性使其成为放大小SERS信号的理想选择,尤其是用于痕量检测。

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