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A Biosensor Based on an Assembled Porous Silicon Microcavity

机译:基于组装多孔硅微腔的生物传感器

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摘要

To solve the problem of the limited depth of penetration of biomolecules into silicon biosensors, which affects the performance of porous silicon devices, a new biological detection device assembled with porous silicon and Bragg structures is proposed that allows the biomolecules to directly enter the porous silicon microcavity layer, thus greatly shifting the resonance peak and improving the sensitivity of the porous silicon. The fabricated porous silicon devices with microcavities and Bragg structures are functionalized and coupled with biomolecules and then assembled with Bragg devices based on quartz glass to form the microcavity. Using the reflection spectrometer to detect the defect peak redshifts of different concentrations of target DNA molecules before and after reaction with the probe DNA molecules, obtaining the difference between the refractive indices before and after reaction. With an increase in the molecular concentration of the DNA in the target and an increase in the defect peak difference, the detection limit is 22.5 nM. The assembled microcavity has the advantages of high detection sensitivity, free labelling, low costs and so on.
机译:为了解决生物分子渗透到硅生物传感器有限的渗透深度的问题,这影响了多孔硅装置的性能,提出了一种用多孔硅和布拉格结构组装的新的生物检测装置,使得生物分子直接进入多孔硅片微胶囊层,从而大大移位共振峰值并提高多孔硅的敏感性。具有微腔和布拉格结构的制造的多孔硅装置是用生物分子的官能化的,然后用基于石英玻璃的布拉格装置组装,形成微腔。使用反射光谱仪检测与探针DNA分子反应之前和之后不同浓度的靶DNA分子的缺陷峰红移,从而获得反应前后折射率的差异。随着DNA的分子浓度的增加和缺陷峰值差的增加,检测极限为22.5nm。组装的微腔具有高检测灵敏度,免费标签,低成本等优点。

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