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Porous silicon optical filters for biosensing applications

机译:多孔硅光学滤光片,用于生物传感应用

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The surface of nanostructured silicon (porous silicon) was biofunctionalized by the deposition of 3-aminopropyltriethoxysilane from solution, leading to high density of amine groups covering the surface which would promote the further immobilization of biomolecules. In addition, porous silicon Bragg reflectors were developed for their use in the visible range. The optical behavior of these structures was previously designed by the use of a computational program, from which the optical constants and thickness of the individual porous silicon layers were determined. The possibility of using these structures as biosensors has been explored, based on the significant changes in the reflectance spectra before and after exposing the porous silicon optical structures to biomolecules. In particular, it is shown that there is a notable shift of the reflectance maximum associated to the Bragg reflector after immobilization of polyclonal mouse antibodies. Thus, the experimental results open the possibility of developing biosensors based on the variation of the position of the optical spectrum of porous silicon based devices. (c) 2006 Elsevier B.V. All rights reserved.
机译:纳米结构硅(多孔硅)的表面通过从溶液中沉积3-氨基丙基三乙氧基硅烷而被生物功能化,导致覆盖在表面上的胺基的密度很高,这将促进生物分子的进一步固定化。此外,还开发了多孔硅布拉格反射器,以用于可见光范围。这些结构的光学性能是事先使用计算程序设计的,由此可以确定各个多孔硅层的光学常数和厚度。基于将多孔硅光学结构暴露于生物分子之前和之后反射光谱的显着变化,已经探索了将这些结构用作生物传感器的可能性。特别地,显示出在固定多克隆小鼠抗体之后,与布拉格反射器有关的最大反射率存在明显的变化。因此,实验结果为基于多孔硅基器件的光谱位置变化而开发生物传感器的可能性提供了可能性。 (c)2006 Elsevier B.V.保留所有权利。

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