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Nano-hole Arrays in Thin Au/Pd Film on Glass, for High Speed Molecular Analysis

机译:玻璃薄Au / Pd膜中的纳米孔阵列,用于高速分子分析

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We present an improved process technology based on e-beam lithography and lift-off technique, for fabrication of different nano-hole arrays in optically thick gold/palladium (Au/Pd=60/40) layers on transparent substrates. Every hole serves as a reaction chamber for bio-molecular analysis (e.g. antibody/antigen recognition), as part of a novel atto-liter titer plate device. The optical characterization of the hole-arrays is pursued, both for the transmission of the light and the fluorescence signal through the holes. Array structures with square and hexagonal holes' distribution, with the hole-diameters between 150 nm and 200 nm and periodicity of 600 nm and 900 nm are fabricated in 200 nm thick layer of gold/palladium alloy on glass. The spectrum of the transmitted light through the hexagonally distributed nano-holes compared to the one of the square distributed nano-holes shows a 20% of light enhancement. Applying Rhodamine G6 solution (0.05 mM) on top of the arrays reveals a nine time increased fluorescent signal.
机译:我们介绍了一种基于电子束光刻和剥离技术的改进的工艺技术,用于在透明基板上的光学厚的金/钯(Au / Pd = 60/40)层中的不同纳米孔阵列的制造。每个孔用作生物分子分析的反应室(例如抗体/抗原识别),作为新型Atto-升滴板装置的一部分。追求孔阵列的光学表征,用于通过孔的光传输和荧光信号。具有方形和六边形孔的阵列结构,在玻璃上的200nm厚的金/钯合金层中制造在150nm和200nm之间的空穴直径和600nm和900nm的周期性。与平方分布式纳米孔的一个相比,通过六角分布的纳米孔的透射光的光谱显示出20%的光增强。在阵列的顶部上施加罗丹明G6溶液(0.05 mm)显示九次荧光信号增加。

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