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适用于高要求拉曼光谱应用的光学小型化策略。

Optics miniaturization strategy for demanding Raman spectroscopy applications.

作者信息

Ilchenko Oleksii, Pilhun Yurii, Kutsyk Andrii, Slobodianiuk Denys, Goksel Yaman, Dumont Elodie, Vaut Lukas, Mazzoni Chiara, Morelli Lidia, Boisen Sofus, Stergiou Konstantinos, Aulin Yaroslav, Rindzevicius Tomas, Andersen Thomas Emil, Lassen Mikael, Mundhada Hemanshu, Jendresen Christian Bille, Philipsen Peter Alshede, Hædersdal Merete, Boisen Anja

机构信息

Technical University of Denmark, Department of Health Technology, Center for Intelligent Drug Delivery and Sensing Using Microcontainers and Nanomechanics, Kgs. Lyngby, Denmark.

Lightnovo ApS, Birkerød, Denmark.

出版信息

Nat Commun. 2024 Apr 8;15(1):3049. doi: 10.1038/s41467-024-47044-7.

Abstract

Raman spectroscopy provides non-destructive, label-free quantitative studies of chemical compositions at the microscale as used on NASA's Perseverance rover on Mars. Such capabilities come at the cost of high requirements for instrumentation. Here we present a centimeter-scale miniaturization of a Raman spectrometer using cheap non-stabilized laser diodes, densely packed optics, and non-cooled small sensors. The performance is comparable with expensive bulky research-grade Raman systems. It has excellent sensitivity, low power consumption, perfect wavenumber, intensity calibration, and 7 cm resolution within the 400-4000 cm range using a built-in reference. High performance and versatility are demonstrated in use cases including quantification of methanol in beverages, in-vivo Raman measurements of human skin, fermentation monitoring, chemical Raman mapping at sub-micrometer resolution, quantitative SERS mapping of the anti-cancer drug methotrexate and in-vitro bacteria identification. We foresee that the miniaturization will allow realization of super-compact Raman spectrometers for integration in smartphones and medical devices, democratizing Raman technology.

摘要

拉曼光谱法可在微观尺度上对化学成分进行无损、无标记的定量研究,美国国家航空航天局(NASA)的“毅力号”火星探测器上就使用了这种技术。不过,具备这样的能力是以对仪器的高要求为代价的。在此,我们展示了一种厘米级小型化拉曼光谱仪,它采用廉价的非稳定激光二极管、密集排列的光学元件和非制冷小型传感器。其性能与昂贵的大型研究级拉曼系统相当。它具有出色的灵敏度、低功耗、完美的波数、强度校准,并且在400 - 4000厘米范围内使用内置参考时分辨率可达7厘米。在包括饮料中甲醇定量、人体皮肤的体内拉曼测量、发酵监测、亚微米分辨率的化学拉曼成像、抗癌药物甲氨蝶呤的定量表面增强拉曼光谱成像以及体外细菌鉴定等应用案例中,该光谱仪都展现出了高性能和多功能性。我们预计,这种小型化将使超紧凑型拉曼光谱仪得以实现,以便集成到智能手机和医疗设备中,从而让拉曼技术得到更广泛应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f154/11001912/2fafca05a94b/41467_2024_47044_Fig1_HTML.jpg

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