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首页> 外文期刊>Nanotechnology >Large-scale high-quality 2D silica crystals: dip-drawing formation and decoration with gold nanorods and nanospheres for SERS analysis
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Large-scale high-quality 2D silica crystals: dip-drawing formation and decoration with gold nanorods and nanospheres for SERS analysis

机译:大规模高质量2D二氧化硅晶体:浸涂形成和金纳米棒和纳米球的装饰,用于SERS分析

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摘要

High-quality colloidal crystals (CCs) are important for use in photonic research and as templates for large-scale plasmonic SERS substrates. We investigated how variations in temperature, colloid concentration, and dip-drawing parameters (rate, incubation time, etc) affect the structure of 2D CCs formed by highly monodisperse silica nanoparticles (SiNPs) synthesized in an Larginine solution and regrown by a modified St?ber method. The best quality 2D CCs were obtained with aqueous 12 wt% colloids at a temperature of 25 °C, an incubation time of 1 min, and a drawing rate of 50 mm min~(-1). Assembling of gold nanorods (GNRs) on 2D CCs resulted in the formation of ring-like chains with a preferential tail-to-tail orientation along the hexagonal boundaries. To the best of our knowledge, this is the first time that such nanostructures have been prepared. Owing to the preferential tail-to-tail packing of GNRs, 2D SiNP CC +GNR substrates demonstrated an analytical SERS enhancement of about 8000, which was 10 to 15 times higher than that for self-assembled GNRs on a silicon wafer. In addition, the analytical SERS enhancement was almost 60 times lower after replacing the nanorods in 2D SiNP CC+GNR substrates with 25 nm gold nanospheres.
机译:高质量的胶体晶体(CC)对于光子研究以及作为大规模等离子SERS衬底的模板非常重要。我们研究了温度,胶体浓度和浸涂参数(速率,孵育时间等)的变化如何影响由在精氨酸溶液中合成并经修饰的St重生的高度单分散二氧化硅纳米颗粒(SiNP)形成的2D CC的结构? ber方法。在25°C的温度下,以12 wt%的胶体水溶液获得最佳质量的2D CC,孵育时间为1分钟,拉伸速率为50 mm min〜(-1)。在2D CC上组装金纳米棒(GNR)导致形成环状链,并沿六边形边界具有从尾到尾的优先取向。据我们所知,这是首次制备此类纳米结构。由于GNR的从尾到尾的填充,二维SiNP CC + GNR基板显示出约8000的SERS分析增强,比硅片上自组装GNR的分析高10到15倍。此外,用25 nm金纳米球代替2D SiNP CC + GNR基板中的纳米棒后,SERS的分析增强值几乎降低了60倍。

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