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混合金属-介质光栅(HMDG)作为一种替代的紫外 SERS 基底。

Hybrid metal-dielectric gratings (HMDGs) as an alternative UV-SERS substrate.

机构信息

Laboratory of Micro-Nano Optics, College of Physics and Electronic Engineering, Sichuan Normal University, Chengdu 610101, China.

School of Optoelectronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu, 610054, China.

出版信息

Phys Chem Chem Phys. 2023 Jun 7;25(22):15257-15262. doi: 10.1039/d3cp01911j.

Abstract

Ultraviolet surface-enhanced Raman scattering (UV-SERS) typically occupies an important position because the electronic absorption bands of many biomolecules are located in the deep-ultraviolet (DUV) or ultraviolet (UV) region. Practical application of UV-SERS still relies on uniform, reproducible, and affordable substrates. The conventional aluminum (Al) plasmonic nanostructures are mostly applied to act as UV-SERS substrates, but their intrinsic ohmic loss hinders their practical application. In this study, wafer-scale hybrid metal-dielectric gratings (HMDGs) consisting of aluminum and silicon (Al-Si) have been successfully fabricated as UV-SERS substrates to reduce ohmic dissipation and elevate the detection performance. Well-defined HMDG substrates exhibit tunable hybrid resonant modes in the UV and the visible regions. The adenine biomolecules deposited on HMDG substrates are used to perform SERS measurement with an excitation wavelength of 325 nm. The HMDG nanostructures can obtain as high as 5 orders of magnitude compared with that of Al film as UV-SERS substrates. The proposed HMDG nanostructures have a great advantage in detecting important biomolecules as UV-SERS substrates.

摘要

紫外表面增强拉曼散射(UV-SERS)通常占据着重要的地位,因为许多生物分子的电子吸收带位于深紫外(DUV)或紫外(UV)区域。UV-SERS 的实际应用仍然依赖于均匀、可重复和经济实惠的衬底。传统的铝(Al)等离子体纳米结构大多被应用于作为 UV-SERS 衬底,但它们固有的欧姆损耗阻碍了它们的实际应用。在这项研究中,成功制备了由铝和硅(Al-Si)组成的晶圆级混合金属-介质光栅(HMDG)作为 UV-SERS 衬底,以降低欧姆损耗并提高检测性能。具有明确定义的 HMDG 衬底在 UV 和可见光区域表现出可调谐的混合共振模式。将腺嘌呤生物分子沉积在 HMDG 衬底上,用 325nm 的激发波长进行 SERS 测量。与 Al 薄膜作为 UV-SERS 衬底相比,HMDG 纳米结构可以获得高达 5 个数量级的增强。所提出的 HMDG 纳米结构在作为 UV-SERS 衬底检测重要生物分子方面具有很大的优势。

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