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Microfluidic Surface-Enhanced Raman Scattering Sensors Based on Nanopillar Forests Realized by an Oxygen-Plasma-Stripping-of-Photoresist Technique

机译:氧等离子体剥离光致抗蚀剂技术实现的基于纳米柱森林的微流表面增强拉曼散射传感器

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摘要

A novel surface-enhanced Raman scattering (SERS) sensor is developed for realtime and highly repeatable detection of trace chemical and biological indicators. The sensor consists of a polydimethylsiloxane (PDMS) microchannel cap and a nanopillar forest-based open SERS-active substrate. The nanopillar forests are fabricated based on a new oxygen-plasma-stripping-of-photoresist technique. The enhancement factor (EF) of the SERS-active substrate reaches 6.06 × 10~6, and the EF of the SERS sensor is about 4 times lower due to the infl uence of the PDMS cap. However, the sensor shows much higher measurement repeatability than the open substrate, and it reduces the sample preparation time from several hours to a few minutes, which makes the device more reliable and facile for trace chemical and biological analysis.
机译:开发了一种新颖的表面增强拉曼散射(SERS)传感器,用于实时,高度可重复的痕量化学和生物指示剂检测。该传感器由一个聚二甲基硅氧烷(PDMS)微通道盖和一个基于纳米柱森林的开放式SERS活性底物组成。纳米柱林是基于一种新的光致抗蚀剂的氧等离子剥离技术制成的。 SERS活性底物的增强因子(EF)达到6.06×10〜6,并且由于PDMS盖的影响,SERS传感器的EF降低了约4倍。但是,该传感器显示的测量可重复性要比敞开的基板高得多,并且将样品制备时间从数小时缩短至几分钟,这使该设备更可靠,更易于进行痕量化学和生物学分析。

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