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NANOHOLE ARRAYS AS OPTICAL AND FLUIDIC ELEMENTS FOR SENSING

机译:纳米羟基作为光学和流体元素用于传感

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Arrays of nanoholes in metal films present several opportunities as surface based sensors in lab-on-chip systems. Metallic nanohole arrays support surface electromagnetic waves that enable enhanced transmission through the holes and have been harnessed for chemical and biological sensing. Nanohole array based sensing performed to date has involved nanoholes that end shortly beyond the metallic film layer on a substrate such as glass. Such dead-ended holes fail to harness the potential of through-hole nanohole arrays including enhanced transport of reactants to the active area and a solution sieving action that is unique among surface-based sensing methods. In this work we investigate the potential of a flow-through-array sensing format.
机译:金属膜中的纳米孔阵列在芯片实验室系统中作为基于表面的传感器提供了多种机会。金属纳米孔阵列支持表面电磁波,该电磁波能够增强通过孔的传输,并已被利用来进行化学和生物传感。迄今为止进行的基于纳米孔阵列的感测涉及纳米孔,该纳米孔终止于诸如玻璃的基底上的金属膜层之外。这样的死孔无法利用通孔纳米孔阵列的潜力,包括增强反应物向活性区域的传输以及基于表面的传感方法独有的溶液筛分作用。在这项工作中,我们研究了流通阵列感应格式的潜力。

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