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Optofluidic concentration: Plasmonic nanostructure as concentrator and sensor

机译:光流体浓度:等离子纳米结构作为浓缩器和传感器

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摘要

The integration of fluidics and optics, as in flow-through nanohole arrays, has enabled increased transport of analytes to sensing surfaces. Limits of detection, however, are fundamentally limited by local analyte concentration. We employ the nanohole array geometry and the conducting nature of the film to actively concentrate analyte within the sensor. We achieve 180-fold enrichment of a dye, and 100-fold enrichment and simultaneous sensing of a protein in less than 1 min. The method presents opportunities for an order of magnitude increase in sensing speed and 2 orders of magnitude improvement in limit of detection.
机译:与流通纳米孔阵列中的流体学和光学学的集成,使得分析物向传感表面的传输得以增加。但是,检测极限基本上受局部分析物浓度的限制。我们利用纳米孔阵列的几何形状和薄膜的导电特性,将分析物主动地集中在传感器中。我们可以在不到1分钟的时间内实现180倍的染料富集,100倍的富集并同时检测蛋白质。该方法为感测速度增加一个数量级和在检测极限方面提供两个数量级的改进提供了机会。

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