首页> 外文会议>Conference on Chemical and Biological Point Sensors for Homeland Defense; Oct 29-30, 2003; Providence, Rhode Island, USA >Investigating Photonic nanostructures for reproducible characterization of bacterial spores
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Investigating Photonic nanostructures for reproducible characterization of bacterial spores

机译:研究光子纳米结构可再现表征细菌的孢子

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Raman spectroscopy has proven to be a plausible solution to the difficult challenge of on-site detection of biological threats. Adding to the challenge is the fact that many biological species, spores specifically, have relatively low scattering cross sections. The intrinsic need to detect these threats at low concentrations and in the presence of strong background signals necessitates the need for surface enhancement schemes. With an available technique to quickly identify bacterial spores, we are investigating the existence of spectral differences between target species in order to incorporate library technologies with the on-site sensor. We are examining many of the reported substrate classes such as: nano-sphere lithography (NSL), Film over nano-sphere (FONS), nano-shells, electrochemically roughened metals, and dispersed and immobilized colloids. Key aspects of this work include discerning what architectural features provide the largest enhancement and reproducibility. We will present preliminary results of bacterial spore identification as well as a comparison of the substrates studied.
机译:拉曼光谱已被证明是对生物威胁进行现场检测的艰巨挑战的可行解决方案。挑战在于,许多生物物种(尤其是孢子)具有相对较低的散射截面这一事实。在低浓度和存在强烈背景信号的情况下检测这些威胁的内在需求使得需要表面增强方案。利用一种可快速识别细菌孢子的技术,我们正在研究目标物种之间光谱差异的存在,以便将文库技术与现场传感器结合在一起。我们正在研究许多已报道的基质类别,例如:纳米球光刻(NSL),纳米球上的薄膜(FONS),纳米壳,电化学粗糙的金属以及分散和固定的胶体。这项工作的关键方面包括辨别哪些架构功能提供最大的增强和可再现性。我们将介绍细菌孢子鉴定的初步结果以及所研究底物的比较。

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