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具有大面积密集热点的 3D 铝/银分层纳米结构用于表面增强拉曼散射。

3D aluminum/silver hierarchical nanostructure with large areas of dense hot spots for surface-enhanced raman scattering.

机构信息

School of Physics Science and Information Technology, Shandong Key Laboratory of Optical Communication Science and Technology, Liaocheng University, Liaocheng, P. R. China.

出版信息

Electrophoresis. 2019 Dec;40(23-24):3123-3131. doi: 10.1002/elps.201900285. Epub 2019 Oct 14.

Abstract

Plasmonic nanomaterials possessing large-volume, high-density hot spots with high field enhancement are highly desirable for ultrasensitive surface-enhanced Raman scattering (SERS) sensing. However, many as-prepared plasmonic nanomaterials are limited in available dense hot spots and in sample size, which greatly hinder their wide applications in SERS devices. Here, we develop a two-step physical deposition protocol and successfully fabricate 3D hierarchical nanostructures with highly dense hot spots across a large scale (6 × 6 cm ). The nanopatterned aluminum film was first prepared by thermal evaporation process, which can provide 3D quasi-periodic cloud-like nanostructure arrays suitable for noble metal deposition; then a large number of silver nanoparticles with controllable shape and size were decorated onto the alumina layer surfaces by laser molecular beam epitaxy, which can realize large-area accessible dense hot spots. The optimized 3D-structured SERS substrate exhibits high-quality detection performance with excellent reproducibility (13.1 and 17.1%), whose LOD of rhodamine 6G molecules was 10 M. Furthermore, the as-prepared 3D aluminum/silver SERS substrate was applied in detection of melamine with the concentration down to 10 M and direct detection of melamine in infant formula solution with the concentration as low 10 mg/L. Such method to realize large-area hierarchical nanostructures can greatly simplify the fabrication procedure for 3D SERS platforms, and should be of technological significance in mass production of SERS-based sensors.

摘要

具有大体积、高密度热点和强场增强的等离子体纳米材料非常适合用于超灵敏表面增强拉曼散射 (SERS) 传感。然而,许多制备好的等离子体纳米材料在可用的密集热点和样品尺寸方面受到限制,这极大地阻碍了它们在 SERS 器件中的广泛应用。在这里,我们开发了一种两步物理沉积方案,并成功制备了具有横跨大尺寸(6×6 cm)的高密度热点的 3D 分级纳米结构。首先通过热蒸发工艺制备纳米图案化的铝膜,其可提供适用于贵金属沉积的 3D 准周期云状纳米结构阵列;然后通过激光分子束外延在氧化铝层表面上镀覆大量具有可控形状和尺寸的银纳米颗粒,从而实现大面积可及的密集热点。优化后的 3D 结构 SERS 基底具有出色的重复性(13.1%和 17.1%)和高质量的检测性能,其对罗丹明 6G 分子的检测限低至 10 M。此外,所制备的 3D 铝/银 SERS 基底用于检测浓度低至 10 M 的三聚氰胺和直接检测婴儿配方溶液中的三聚氰胺,其浓度低至 10 mg/L。这种实现大面积分级纳米结构的方法可以极大地简化 3D SERS 平台的制造过程,在基于 SERS 的传感器的大规模生产中具有重要的技术意义。

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