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表面增强拉曼散射全息术。

Surface-enhanced Raman scattering holography.

机构信息

ICFO - Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, Barcelona, Spain.

Department of Physical and Inorganic Chemistry and EMaS, Universitat Rovira i Virgili, Tarragona, Spain.

出版信息

Nat Nanotechnol. 2020 Dec;15(12):1005-1011. doi: 10.1038/s41565-020-0771-9. Epub 2020 Sep 28.

Abstract

Nanometric probes based on surface-enhanced Raman scattering (SERS) are promising candidates for all-optical environmental, biological and technological sensing applications with intrinsic quantitative molecular specificity. However, the effectiveness of SERS probes depends on a delicate trade-off between particle size, stability and brightness that has so far hindered their wide application in SERS imaging methodologies. In this Article, we introduce holographic Raman microscopy, which allows single-shot three-dimensional single-particle localization. We validate our approach by simultaneously performing Fourier transform Raman spectroscopy of individual SERS nanoparticles and Raman holography, using shearing interferometry to extract both the phase and the amplitude of wide-field Raman images and ultimately localize and track single SERS nanoparticles inside living cells in three dimensions. Our results represent a step towards multiplexed single-shot three-dimensional concentration mapping in many different scenarios, including live cell and tissue interrogation and complex anti-counterfeiting applications.

摘要

基于表面增强拉曼散射(SERS)的纳米探针有望成为全光学环境、生物和技术传感应用的候选者,具有内在的定量分子特异性。然而,SERS 探针的有效性取决于颗粒尺寸、稳定性和亮度之间的微妙权衡,这迄今为止一直阻碍着它们在 SERS 成像方法中的广泛应用。在本文中,我们介绍了全息拉曼显微镜,它允许单次三维单粒子定位。我们通过同时对单个 SERS 纳米粒子进行傅里叶变换拉曼光谱和拉曼全息术来验证我们的方法,使用剪切干涉法提取广角拉曼图像的相位和幅度,并最终在三维空间中定位和跟踪活细胞内的单个 SERS 纳米粒子。我们的结果代表着朝着在许多不同场景中的多路复用单次三维浓度映射迈出了一步,包括活细胞和组织检测以及复杂的防伪应用。

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