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Microscale and Nanoscale Electrophotonic Diagnostic Devices

机译:微米级和纳米级电光诊断设备

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摘要

Detecting and identifying infectious agents and potential pathogens in complex environments and characterizing their mode of action is a critical need. Traditional diagnostics have targeted a single characteristic, e.g. spectral response, surface receptor, mass, intrinsic conductivity, etc. However, advances in detection technologies have identified emerging approaches in which multiple modes of action are combined to obtain enhanced performance characteristics. Particularly appealing in this regard, electrophotonic devices capable of coupling light to electron translocation have experienced rapid recent growth and offer significant advantages for diagnostics. In this chapter, we explore three specific promising approaches that combine electronics and photonics: (a) assays based on closed bipolar electrochemistry coupling electron transfer to color or fluorescence (b) sensors based on localized surface plasmon resonances, and (c) emerging nanophotonics approaches, such as those based on zero-mode waveguides and metamaterials.
机译:在复杂环境中检测和识别传染原和潜在病原体并表征其作用方式是至关重要的。传统诊断针对的是单个特征,例如光谱响应,表面受体,质量,固有电导率等。然而,检测技术的进步已经确定了新兴的方法,其中将多种作用方式结合在一起以获得增强的性能特征。在这方面特别吸引人的是,能够将光耦合到电子易位的电子光子器件近来发展迅速,并为诊断提供了显着的优势。在本章中,我们探索结合电子学和光子学的三种特定的有前途的方法:(a)基于将电子转移耦合至颜色或荧光的封闭双极电化学的分析方法(b)基于局部表面等离振子共振的传感器,以及(c)新兴的纳米光子学方法,例如基于零模波导和超材料的材料。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(9),5
  • 年度 -1
  • 页码 a034249
  • 总页数 22
  • 原文格式 PDF
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