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Tunable Au-Ag nanobowl arrays for size-selective plasmonic biosensing

机译:可调谐的Au-Ag纳米碗阵列,用于尺寸选择性等离子体生物传感

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摘要

Selectivity is often a major obstacle for localized surface plasmon resonance-based biosensing in complex biological solutions. An additional degree of selectivity can be achieved through the incorporation of shape complementarity on the nanoparticle surface. Here, we report the versatile fabrication of substrate-bound Au-Ag nanobowl arrays through the galvanic ion replacement of silver nanodisk arrays. Both localized surface plasmon resonance (LSPR) and surface enhanced Raman spectroscopy (SERS) were carried out to detect the binding of analytes of varying size to the nanobowl arrays. Large increases in the LSPR and SERS response were measured for analytes that were small enough to enter the nanobowls, compared to those too large to come into contact with the interior of the nanobowls. This size-selective sensing should prove useful in both size determination and differentiation of large analytes in biological solutions, such as viruses, fungi, and bacterial cells.
机译:选择性通常是复杂生物溶液中基于局部表面等离子体共振的生物传感的主要障碍。通过在纳米颗粒表面上引入形状互补性,可以实现更高的选择性。在这里,我们报告通过银纳米盘阵列的电离子置换,对基片结合的Au-Ag纳米碗阵列进行多功能制造。进行了局部表面等离振子共振(LSPR)和表面增强拉曼光谱(SERS),以检测大小不同的分析物与纳米碗阵列的结合。与那些太大而无法与纳米碗内部接触的分析物相比,对于那些足以进入纳米碗的分析物而言,其LSPR和SERS响应得到了大幅提高。这种尺寸选择感测在证明尺寸确定和区分生物溶液(例如病毒,真菌和细菌细胞)中的大型分析物时都应很有用。

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