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Nanopillar array structures for enhancing biosensing performance

机译:纳米柱阵列结构可增强生物传感性能

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摘要

Fabrication of metallic nanopillar array structures and their application as electrodes in electrochemical-based biosensors are discussed in this report. Vertically standing nanopillar array structures were fabricated using an electrodeposition technique and their electrochemical characteristics were evaluated. For possible use in biosensing applications, these standing nanopillars should have sufficient mechanical stability to sustain the capillary forces caused by the nanopillar – liquid interactions in aqueous environment and should provide increased signal response in an electrochemical process. Our results showed that the developed nanopillar arrays were mechanically stable in aqueous environments and the nanostructured electrodes exhibited increased electrochemical response compared with flat electrodes.
机译:本报告讨论了金属纳米柱阵列结构的制造及其在基于电化学的生物传感器中作为电极的应用。使用电沉积技术制造垂直站立的纳米柱阵列结构,并评估其电化学特性。为了在生物传感应用中可能使用,这些立式纳米柱应具有足够的机械稳定性,以承受在水环境中由纳米柱-液体相互作用引起的毛细作用力,并应在电化学过程中提供增强的信号响应。我们的结果表明,所开发的纳米柱阵列在水性环境中机械稳定,并且与扁平电极相比,纳米结构电极表现出增强的电化学响应。

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