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Nanoporous Silver Film Fabricated by Oxygen Plasma: A Facile Approach for SERS Substrates

机译:氧等离子体制备的纳米多孔银膜:一种用于SERS基底的简便方法

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Nanoporous metal films are promising sub-strates for surfaced-enhanced Raman scattering (SERS) measurement, owing to their homogeneity, large surface area, and abundant hot-spots. Herein, a facile procedure was developed to fabricate nanoporous Ag film on various substrate surfaces. Thermally deposited Ag film was first treated with O-2 plasma, resulting in porous Ag/AgxO film (AgxO-NF) with nanoscale feature. Sodium citrate was then used to reduce AgxO to Ag, forming nanoporous Ag film (AgNF) with similar morphology. The AgNF substrate demonstrates 30-fold higher Raman intensity than Ag film over polystyrene nanospheres (d = 600 nm) using 4mercaptobenzoic acid (4-MBA) as the sensing molecule. Comparing with ordinary Raman measurement on 4-MBA solution, an enhancement factor of similar to 6 x 10(6) was determined for AgNF. The AgNF substrate was evaluated for benzoic acid, 4-nitrophenol, and 2-mercaptoethanesulfonate, showing high SERS sensitivity for chemicals that bind weakly to. Ag surface and molecules with relatively small Raman cross section at micromolar concentration. In addition to its simplicity, the procedure can be applied to various materials such as transparency film, filter paper, hard polystyrene film, and aluminum foil; revealing similar Raman sensitivity. By testing the durability of the substrate, we found that the AgxO films Can be stored in ambient conditions for more than 90 days and still deliver the same SERS intensity if the films are treated with sodium citrate before use. These results demonstrate the advantage of the proposed approach for mass production of low-cost, sensitive, and durable SERS substrates. The transferable nature of these AgNF to different flexible surfaces also allows their easy integration with other sensing schemes.
机译:纳米多孔金属膜由于其均匀性,较大的表面积和大量的热点,因此有望用于表面增强拉曼散射(SERS)测量。本文中,开发了一种容易的方法以在各种基底表面上制造纳米多孔Ag膜。首先用O-2等离子体处理热沉积的Ag膜,形成具有纳米级特征的多孔Ag / AgxO膜(AgxO-NF)。然后使用柠檬酸钠将AgxO还原为Ag,形成形态相似的纳米多孔Ag膜(AgNF)。使用4巯基苯甲酸(4-MBA)作为感测分子,在聚苯乙烯纳米球(d = 600 nm)上,AgNF底物的拉曼强度比Ag膜高30倍。与在4-MBA溶液上进行常规拉曼测量相比,确定了AgNF的增强因子类似于6 x 10(6)。对AgNF底物的苯甲酸,4-硝基苯酚和2-巯基乙磺酸盐进行了评估,对弱结合的化学品显示出很高的SERS敏感性。在微摩尔浓度下,Ag表面和具有相对较小拉曼横截面的分子。除了简单以外,该程序还可以应用于各种材料,例如透明膜,滤纸,硬质聚苯乙烯膜和铝箔;表现出类似的拉曼灵敏度。通过测试基材的耐久性,我们发现AgxO薄膜可以在环境条件下保存90天以上,并且如果薄膜在使用前用柠檬酸钠处理,则仍可以提供相同的SERS强度。这些结果证明了所建议的方法可大量生产低成本,敏感和耐用的SERS基材。这些AgNF可转移到不同的柔性表面上的性质也使它们易于与其他传感方案集成。

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