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通过表面增强拉曼散射在光栅表面的手性金螺旋体上进行对映选择性分子检测。

Enantioselective Molecular Detection by Surface Enhanced Raman Scattering at Chiral Gold Helicoids on Grating Surfaces.

作者信息

Skvortsova Anastasiia, Han Jeong Hyun, Tosovska Andrea, Bainova Polina, Kim Ryeong Myeong, Burtsev Vasilii, Erzina Mariia, Fitl Premysl, Urbanova Marie, Svorcik Vaclav, Ha In Han, Nam Ki Tae, Lyutakov Oleksiy

机构信息

Department of Solid State Engineering, University of Chemistry and Technology, Prague 16628, Czech Republic.

Department of Materials Science and Engineering, Seoul National University, Seoul 08826, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2024 Sep 11;16(36):48526-48535. doi: 10.1021/acsami.4c09301. Epub 2024 Sep 3.

Abstract

Distinct advantages of surface enhanced Raman scattering (SERS) in molecular detection can benefit the enantioselective discrimination of specific molecular configurations. However, many of the recent methods still lack versatility and require customized anchors to chemically interact with the studied analyte. In this work, we propose the utilization of helicoid-shaped chiral gold nanoparticles arranged in an ordered array on a gold grating surface for enantioselective SERS recognition. This arrangement ensured a homogeneous distribution of chiral plasmonic hot spots and facilitated the enhancement of the SERS response of targeted analytes through plasmon coupling between gold helicoid multimers (formed in the grating valleys) and adjacent regions of the gold grating. Naproxen enantiomers ((+) and (-)) were employed as model compounds, revealing a clear dependence of their SERS response on the chirality of the gold helicoids. Additionally, propranolol and penicillamine enantiomers were used to validate the universality of the proposed approach. Finally, numerical simulations were conducted to elucidate the roles of intensified local electric field and optical helicity density on the SERS signal intensity and on the chirality of the nanoparticles and enantiomers. Unlike previously reported methods, our approach relies on the excitation of a chiral plasmonic near-field and its interaction with the chiral environment of analyte molecules, obviating the need for the enantioselective entrapment of targeted molecules. Moreover, our method is not limited to specific analyte classes and can be applied to a broad range of chiral molecules.

摘要

表面增强拉曼散射(SERS)在分子检测方面的独特优势有助于对特定分子构型进行对映选择性鉴别。然而,许多最新方法仍然缺乏通用性,并且需要定制的锚定物与所研究的分析物进行化学相互作用。在这项工作中,我们提出利用在金光栅表面以有序阵列排列的螺旋状手性金纳米颗粒进行对映选择性SERS识别。这种排列确保了手性等离子体热点的均匀分布,并通过金螺旋多聚体(在光栅谷中形成)与金光栅相邻区域之间的等离子体耦合促进了目标分析物的SERS响应增强。以萘普生对映体((+)和(-))作为模型化合物,揭示了它们的SERS响应明显依赖于金螺旋体的手性。此外,使用普萘洛尔和青霉胺对映体来验证所提出方法的通用性。最后,进行了数值模拟,以阐明增强的局部电场和光学螺旋度密度对SERS信号强度以及对纳米颗粒和对映体手性的作用。与先前报道的方法不同,我们的方法依赖于手性等离子体近场的激发及其与分析物分子手性环境的相互作用,从而无需对目标分子进行对映选择性捕获。此外,我们的方法不限于特定的分析物类别,可应用于广泛的手性分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9368/11403552/6c3dde3ef34a/am4c09301_0001.jpg

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