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High-density ordered Ag@Al2O3 nanobowl arrays in applications of surface-enhanced Raman spectroscopy

机译:高密度有序Ag @ Al2O3纳米碗阵列在表面增强拉曼光谱中的应用

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In this paper, we demonstrate a high-performance surface-enhanced Raman scattering (SERS) substrate based on high-density ordered Ag@Al2O3 nanobowl arrays. By ion beam etching (IBE) the anodized aluminum oxide (AAO) and subsequent Ag coating, ordered Ag@Al2O3 nanobowl arrays were created on the Si substrate. Unlike the 'hot spots' generated between adjacent metallic nanostructures, the Ag@Al2O3 nanobowl introduced 'hot spots' on the metal boundary of its hemispherical cavity. Based on the analysis of SERS signals, the optimized SERS substrate of Ag@Al2O3 nanobowl arrays had both high sensitivity and large-area uniformity. A detection limit as low as 10(-10) M was obtained using chemisorbed p-thiocresol (p-Tc) molecules, and the SERS signal was highly reproducible with a small standard deviation. The method opens up a new way to create highly sensitive SERS sensors with high-density 'hot spots', and it could play an important role in device design and corresponding biological and food safety monitoring applications.
机译:在本文中,我们演示了一种基于高密度有序Ag @ Al2O3纳米碗阵列的高性能表面增强拉曼散射(SERS)衬底。通过离子束蚀刻(IBE)阳极氧化铝(AAO)和随后的Ag涂层,在Si基板上创建了有序的Ag @ Al2O3纳米碗阵列。与相邻金属纳米结构之间产生的“热点”不同,Ag @ Al2O3纳米碗在其半球形空腔的金属边界上引入了“热点”。基于对SERS信号的分析,Ag @ Al2O3纳米碗阵列的优化SERS衬底具有高灵敏度和大面积均匀性。使用化学吸附的对硫代甲酚(p-Tc)分子可实现低至10(-10)M的检测限,并且SERS信号可高度重现,标准偏差小。该方法为创建具有高密度“热点”的高灵敏度SERS传感器开辟了一条新途径,并且可以在设备设计以及相应的生物和食品安全监控应用中发挥重要作用。

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