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一种低成本的时间分辨拉曼光谱传感系统,可实现荧光抑制。

A low cost time-resolved Raman spectroscopic sensing system enabling fluorescence rejection.

机构信息

School of Civil Engineering, Purdue University, West Lafayette, Indiana 47907-2051, USA.

出版信息

Appl Spectrosc. 2010 Feb;64(2):201-10. doi: 10.1366/000370210790619636.

Abstract

This paper describes a novel, compact, fiber-coupled, time-resolved Raman spectroscopy system that takes advantage of recent developments in diode laser and data acquisition technology to exploit the natural temporal separation between Raman and fluorescence phenomena and thereby limits the influence of fluorescence on Raman observations. The unit has been designed to be particularly low cost and is intended to provide the foundation for a wide range of in-line or fieldable sensing devices that can enhance the potential and affordability of in situ chemical analyses. The system operating principles, design, and performance are discussed along with its advantages and tradeoffs relative to traditional continuous wave (CW) Raman techniques. The system relies on a 6.4 kHz repetition rate 900 ps pulsed diode laser operating in the visible wavelength range (532 nm) to enhance the quality of Raman observations relative to CW and infrared systems, particularly for analytes examined in the presence of fluorophores. Time-resolved photon counting, achieved through a combination of off-the-shelf and custom hardware and software, limits the influence of fluorescence on Raman observations under pulsed excitation. The paper presents examples of the quality of Raman signatures that can be obtained with the system for a variety of compounds such as trichloroethylene, benzene, an aqueous nitrate solution, and olive oil. Further, the paper demonstrates an approximately 15-fold improvement in signal-to-noise ratio when comparing long- and short-gated time-resolved photon counting acquisition scenarios for a neat benzene sample doped with rhodamine 6G at a concentration of 1 x 10(-4) M. The system's versatility and effectiveness in the assessment of complex mixtures representative of industrial or field settings is demonstrated through analysis of a gasoline sample. Additional discussion outlines how efficient signal averaging over extended observation periods can enable low concentration chemical analyses, particularly relevant in field settings.

摘要

本文描述了一种新颖、紧凑、光纤耦合的时间分辨拉曼光谱系统,该系统利用二极管激光和数据采集技术的最新进展,利用拉曼和荧光现象之间的自然时间分离,从而限制了荧光对拉曼观测的影响。该单元的设计成本特别低,旨在为一系列在线或可现场使用的传感设备提供基础,这些设备可以提高原位化学分析的潜力和可负担性。本文讨论了系统的工作原理、设计和性能,以及相对于传统连续波(CW)拉曼技术的优势和权衡。该系统依赖于工作在可见波长范围(532nm)的 6.4kHz 重复率 900ps 脉冲二极管激光,以提高拉曼观测的质量,相对于 CW 和红外系统,特别是对于在荧光团存在下检查的分析物。通过结合现成的和定制的硬件和软件,实现了时间分辨光子计数,从而在脉冲激发下限制了荧光对拉曼观测的影响。本文介绍了该系统可以获得各种化合物(如三氯乙烯、苯、硝酸水溶液和橄榄油)的拉曼特征质量的示例。此外,本文还通过比较纯苯样品中掺杂浓度为 1x10(-4)M 的若丹明 6G 的长和短门控时间分辨光子计数采集场景,证明了信噪比提高了约 15 倍。通过对代表工业或现场环境的复杂混合物的汽油样品进行分析,展示了该系统在评估复杂混合物方面的多功能性和有效性。此外的讨论还概述了如何通过在扩展观测期内进行有效的信号平均,实现低浓度化学分析,特别是在现场环境中。

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