高灵敏度,低成本的深紫外共振拉曼微光谱系统

IF 3.6 Q1 CHEMISTRY, MULTIDISCIPLINARY
Joseph Harrington, Vsevolod Cheburkanov, Mykyta Kizilov, Ilya Kulagin, Georgi I. Petrov, Vladislav V. Yakovlev
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引用次数: 0

摘要

深紫外共振拉曼光谱(DUVRR)是一种强大的化学和结构分析技术,具有显著的优势,包括增加信号增强,减少荧光干扰和更高的空间分辨率。然而,传统深紫外(DUV)激发源的高成本和复杂性限制了其广泛应用。本文提出了一种新颖的、具有成本效益的DUVRR显微镜系统,该系统利用发射波长为253.7 nm的低压汞灯作为激发源。该系统通过汞蒸气电池实现了高效的拉曼滤波,并集成了用于高光谱成像的多路光纤。该设计在各种应用中表现出强大的性能,包括荧光抑制、聚合物表征、生物成像和超灵敏的环境污染物检测。集成的光腔用于信号增强,可以检测分析物的纳摩尔浓度,为生物医学和环境研究中的高灵敏度测量铺平了道路。这些进步证明了经济实惠的高性能DUVRR系统的实用性,可以广泛应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Highly Sensitive, Low-Cost Deep-UV Resonant Raman Microspectroscopy Systems

Highly Sensitive, Low-Cost Deep-UV Resonant Raman Microspectroscopy Systems

Highly Sensitive, Low-Cost Deep-UV Resonant Raman Microspectroscopy Systems

Highly Sensitive, Low-Cost Deep-UV Resonant Raman Microspectroscopy Systems

Highly Sensitive, Low-Cost Deep-UV Resonant Raman Microspectroscopy Systems

Deep-UV resonant Raman (DUVRR) spectroscopy is a powerful technique for chemical and structural analysis, offering significant advantages, including increased signal enhancement, reduced fluorescence interference, and higher spatial resolution. However, the high cost and complexity of traditional Deep-UV (DUV) excitation sources have limited its broader adoption. Herein, a novel, cost-effective DUVRR microscopy system utilizing a low-pressure mercury lamp emitting at 253.7 nm as the excitation source is presented. The system achieves efficient Raman filtering through a mercury vapor cell and incorporates multiplexed fiber optics for hyperspectral imaging. This design demonstrates robust performance across diverse applications, including fluorescence suppression, polymer characterization, biological imaging, and ultrasensitive detection of environmental contaminants. The integration of an optical cavity for signal enhancement enables the detection of nanomolar concentrations of analytes, paving the way for high-sensitivity measurements in biomedical and environmental research. These advancements demonstrate the practicality of affordable, high-performance DUVRR systems for widespread application.

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CiteScore
7.30
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