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Detection of biomolecules with 1D photonic crystals based on porous silicon

机译:基于多孔硅的一维光子晶体生物分子检测

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Fabrication of different porous silicon structures, namely rugate filters and rugate filters with porous silicon monolayers on top, as well as the characterization of both their reflectivity spectrum and their sensing performance are presented. The focus of this work is on a thorough analysis of the different optical features in the reflectivity spectrum and their utilization in biosensing experiments. Here, changes in the position and intensity of the rugate peak upon infiltration/adsorption of biomolecules into/on the porous structure are compared to variations of these two parameters in the fringes, resulting from Fabry-Pérot interference at the porous silicon layer interfaces. Depending on the size of the investigated biomolecules different information can be extracted from the rugate peak and the Etalon fringes in the reflectivity spectrum, facilitating the sensitive detection of analytes.
机译:介绍了不同多孔硅结构的制造,即皱褶过滤器和在顶部具有多孔硅单层的皱褶过滤器,以及其反射率光谱和传感性能的表征。这项工作的重点是对反射光谱中不同光学特征及其在生物传感实验中的利用进行全面分析。在此,将生物分子渗透/吸附到多孔结构中/上的皱褶峰的位置和强度的变化与条纹中这两个参数的变化进行了比较,这是由于多孔硅层界面处的Fabry-Pérot干涉所致。根据所研究的生物分子的大小,可以从皱褶峰和Etalon条纹的反射率谱中提取不同的信息,从而有助于灵敏地检测分析物。

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