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Sensing based on Surface-Enhanced Raman Scattering using Self-forming ZnO nanoarrays coated with Gold as Substrates

机译:基于表面增强拉曼散射的传感,该传感使用涂有金的自形成ZnO纳米阵列作为基质

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Surface-Enhanced Raman spectroscopy (SERS) is a widely used technique adopted in both academia and industry for the detection of trace quantities of Raman active molecules. This is usually accomplished by functionalizing distributions of plasmonic metal nanoparticles with the analyte molecules. Recently metal-coated nanostructures have been investigated as alternatives to dispersions of metal nanoparticles in order to avoid clustering and homogeneity/reproducibility issues. In this paper, several samples of Au-coated ZnO nanoarrays are adopted as SERS substrates in order to investigate the molecular sensing capacity for methylene blue (MB) molecules. Self-forming ZnO nanoarrays were grown on both c-sapphire and silicon substrates by pulsed laser deposition. The nanoarrays were then coated with 30 nm of gold using thermal evaporation and the SERS signals of MB functionalized samples were obtained with a Raman microspectrometer. The ratio of SERS intensity to that of an MB functionalized glass substrate (I_(SERS)/I_(Raman)) was calculated based on the averaged SERS signals. A relatively good within-wafer homogeneity of the enhancement effect was found with I_(SERS)/I_(Raman) values as high as 64.2 for Au-coated nano ZnO grown on silicon substrates. The experimental results show that the Au-coated ZnO nanoarrays can be excellent SERS substrates for molecular/chemical analyte sensing.
机译:表面增强拉曼光谱(SERS)是学术界和工业界广泛采用的检测痕量拉曼活性分子的技术。这通常是通过使用分析物分子功能化等离激元金属纳米颗粒的分布来实现的。近来,已经研究了金属涂覆的纳米结构作为金属纳米颗粒分散体的替代方案,以避免聚集和均质性/再现性问题。为了研究亚甲基蓝(MB)分子的分子传感能力,本文采用了几个镀金的ZnO纳米阵列样品作为SERS衬底。通过脉冲激光沉积,自形成的ZnO纳米阵列在c蓝宝石和硅衬底上生长。然后使用热蒸发法将纳米阵列涂上30 nm的金,并用拉曼光谱仪获得MB功能化样品的SERS信号。基于平均的SERS信号计算SERS强度与MB官能化玻璃基板的SERS强度之比(I_(SERS)/ I_(Raman))。对于在硅衬底上生长的金包被的纳米ZnO,I_(SERS)/ I_(Raman)值高达64.2,具有相对良好的晶片内均匀性。实验结果表明,Au包覆的ZnO纳米阵列可以作为用于分子/化学分析物传感的优良SERS衬底。

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