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A Facile Deposition of Silver onto the Inner Surface of a Glass Capillary Tube for Micro-Surface-Enhanced Raman Scattering Measurements

机译:在玻璃毛细管的内表面上轻松沉积银,以进行微表面增强拉曼散射测量

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摘要

Silver can be deposited very efficiently onto glass substrates using only ethanolic solutions of AgNO_(3) and butylamine. This paper reports that the inner surface of a glass capillary can also be coated evenly with silver by shaking it after soaking in ethanolic solutions of AgNO_(3) and butylamine; the silver deposited outside the capillary can be easily wiped off with cotton wool before drying. The grain size of the silver deposited onto the inner surface can be readily controlled within the range from 20 to 100 nm by varying the relative molar ratio of butylamine and AgNO_(3) used as reactants. Due to its nanoaggregated structure, the Ag coated capillary is a very efficient surface-enhanced Raman scattering (SERS) active substrate, particularly usable in the microanalysis of chemicals; the detection limit of adenine is as low as 1.0 X 10~(-7) M based on a signal-to-noise (S/N) ratio of 3. Since the proposed method is cost-effective and is suitable for the mass production of Ag coated capillaries, we fully expect it to play a significant role in the development of SERS based microchip analyzers and even in the fabrication of Ag coated hollow glass waveguides.
机译:仅使用AgNO_(3)和丁胺的乙醇溶液,银可以非常有效地沉积到玻璃基板上。本文报道玻璃毛细管的内表面也可以通过浸入AgNO_(3)和丁胺的乙醇溶液中摇动使其均匀地涂银。干燥之前,可以轻松地用棉绒擦去毛细管外部沉积的银。通过改变用作反应物的丁胺和AgNO_(3)的相对摩尔比,可以容易地将沉积在内表面上的银的粒径控制在20至100nm的范围内。由于其纳米聚集的结构,镀银毛细管是一种非常有效的表面增强拉曼散射(SERS)活性基质,特别适用于化学物质的微分析。基于3的信噪比,腺嘌呤的检出限低至1.0 X 10〜(-7)M。由于该方法经济高效,适合批量生产对于镀银毛细管,我们完全希望它在基于SERS的微芯片分析仪的开发甚至在镀银空心玻璃波导的制造中发挥重要作用。

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