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Vertically standing nanoporous Al-Ag zig-zag silver nanorod arrays for highly active SERS substrates

机译:用于高活性SERS基材的垂直常设纳米孔AL-AG ZIG-ZAG银纳米座阵列

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摘要

Surface enhanced Raman scattering (SERS) has emerged as a promising technique for chemical and biological sensing. "Hot spots" are the areas on noble metal nanostructures where light is highly concentrated into small volumes and enhances the local electromagnetic field near the metal nanostructures. These hot spots have been claimed to provide extraordinary enhancements to the SERS signal. Here, we report the fabrication of nanoporous zig-zag Ag nanostructures with built-in high density hot spots. The zig-zag Ag nanostructures were fabricated by glancing angle deposition of Ag and Al, with Al deposited on the edges of the zig-zag structure during growth. A 2.5 wt% HCl solution was used for etching Al from the Ag-Al zig-zag structure. The etching process produced intra-particle gaps by leaching less stable Al from fully alloyed Al-Ag nanostructures. This step of mild acid etching (2.5% v/v HCl for 45 min) allowed the formation of Raman hot spots on the elbows of zig-zag nanorods while maintaining the zig-zag morphology of highly active Ag nanostructures. A high enhancement factor of similar to 10(6) was observed on nanoporous zig-zag Ag nanostructures obtained by de-alloying, making them very appealing as Raman sensors. The role played by nanogap hot spots in Ag zig-zag nanostructures towards SERS enhancement is modelled by using finite difference time domain (FDTD) simulations.
机译:表面增强拉曼散射(SERS)已成为化学和生物传感的有希望的技术。 “热点”是贵金属纳米结构上的区域,其中光高度浓缩成小体积,并增强金属纳米结构附近的局部电磁场。已声称这些热点为SERS信号提供了非凡的增强。在这里,我们报告了纳米多孔之曲ZAG纳米结构与内置高密度热点的制造。通过Ag和Al的透明角沉积来制造Zig-Zag Ag纳米结构,在生长期间沉积在Zig-ZAG结构的边缘上。将2.5wt%HCl溶液从Ag-Al Zig-ZAG结构中用于蚀刻Al。通过从完全合金化的Al-Ag纳米结构中浸出较少的稳定性的Al,蚀刻工艺产生颗粒间隙。这种温和酸蚀刻的步骤(2.5%v / v HCl 45分钟)允许在Zig-Zag纳米棒的肘部上形成拉曼热点,同时保持高活性Ag纳米结构的Zig-Zag形态。在通过除合金化获得的纳米多孔之曲ZAG Ag纳米结构上观察到类似于10(6)的高增强因子,使它们非常有吸引力作为拉曼传感器。通过使用有限差分时域(FDTD)模拟,建模了纳米曲线ZAG纳米结构中纳米曲格纳米结构中的纳米曲折纳米结构中的角色。

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