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Implementation of substrates for surface-enhanced Raman spectroscopy for continuous analysis in an optofluidic device

机译:用于表面增强拉曼光谱的衬底的实现,以在光流体设备中进行连续分析

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The fabrication of substrates for surface-enhanced Raman spectroscopy (SERS), which offer high enhancement factors as well as spatially homogeneous distribution of the enhancement, plays an important role for expanding the surface-enhanced Raman spectroscopy to a powerful quantitative and non-invasive measurement technique. In this paper, a method for the fabrication of capable SERS-active substrates by laser treatment of gold films supported on glass with single 351 ran UV-laser pulses is presented. Resulting nanometer scaled structures show enhancement factors of up to 106 with very high spatial reproducibility for a monolayer of benzenethiol. A method for integration of these substrates into PDMS microchannels is shown. A technique for the generation of a simple mold master for PDMS replication is presented. Rhodamine 6G is used as model system to demonstrate continuous measurements on a solid SERS-active substrate in a microchannel. The label-free detection of the biological molecule albumin is improved by an order of magnitude.
机译:用于表面增强拉曼光谱(SERS)的基底的制造提供了高增强因子以及增强的空间均匀分布,对于将表面增强拉曼光谱扩展到强大的定量和非侵入性测量起着重要作用技术。在本文中,提出了一种通过用单个351nm紫外激光脉冲对玻璃上支撑的金膜进行激光处理来制造功能强大的SERS活性基板的方法。所得的纳米级结构显示出高达106的增强因子,并且对于苯硫酚单层具有非常高的空间再现性。显示了将这些底物整合到PDMS微通道中的方法。提出了一种用于PDMS复制的简单模具母版的生成技术。罗丹明6G用作模型系统以演示在微通道中对固态SERS活性底物的连续测量。生物分子白蛋白的无标记检测提高了一个数量级。

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