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Gold-Coated Ordered Nanoporous Anodic Alumina Bilayers for Future Label-Free Interferometric Biosensors

机译:镀金有序纳米多孔阳极氧化铝双层用于未来的无标签干涉生物传感器。

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摘要

A cost-effective label-free optical biosensor based on gold-coated self-ordered nanoporous anodic alumina bilayers is presented. The structure is formed by two uniform nanoporous layers of different porosity (i.e., a top layer with large pores and a bottom layer with smaller pores). Each layer presents uniform pore size, regular pore distribution, and regular diameter along its pore length. To increase and improve the output sensing signals, a thin gold layer on the top surface was deposited. The gold layer increases the refractive index contrast between the nanoporous alumina layer and the analytical aqueous solution, and it results in a greater contrast in the interferometric spectrum and a higher sensitivity of the structure. From this structurally engineered architecture, the resulting reflectivity spectrum shows a complex series of Fabry—Perot interference fringes, which was analyzed by the reflective interferometric Fourier transform spectroscopy (RIFTS) method. To determine the performance of this structure for biosensing applications, we tested bovine serum albumin (BSA) as the target protein. The results show a significant enhancement of the RIFTS peak intensity and position when a gold layer is on the top surface.
机译:提出了一种具有成本效益的无标记光学生物传感器,该传感器基于镀金的自定序纳米多孔阳极氧化铝双层。该结构由具有不同孔隙率的两个均匀的纳米多孔层(即,具有大孔的顶层和具有较小孔的底层)形成。每层的孔长度均一,孔分布均匀,直径均匀。为了增加和改善输出感测信号,在顶表面上沉积了一层薄金层。金层增加了纳米多孔氧化铝层和分析水溶液之间的折射率对比度,并且导致干涉光谱中的对比度更大并且结构的灵敏度更高。通过这种结构设计的体系结构,所得的反射光谱显示了一系列复杂的Fabry-Perot干涉条纹,并通过反射干涉傅里叶变换光谱(RIFTS)方法进行了分析。为了确定该结构在生物传感应用中的性能,我们测试了牛血清白蛋白(BSA)作为目标蛋白。结果表明,当金层位于顶表面时,RIFTS峰强度和位置显着增强。

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