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Fiber-optic probes with improved excitation and collection efficiency for deep-UV Raman and resonance Raman spectroscopy

机译:具有改进的激发和收集效率的光纤探针,用于深紫外拉曼光谱和共振拉曼光谱

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The ability of ultraviolet resonance Raman spectroscopy (UVRRS) to determine structural, environmental, and analytical information concerning low-concentration aqueous biomolecules makes it a powerful bioanalytical and biophysical technique. Unfortunately, its utility has been limited by experimental requirements that preclude in situ or in vice studies in most cases. We have developed the first high-performance fiber-optic probes suitable for long-term use in pulsed UVRRS applications in the deep-UV (DUV, 205-250 nm). The probes incorporate recently developed improved ultraviolet (IUV) fibers that do not exhibit the rapid solarization and throughput decay that previously hampered the use of optical fibers for delivering pulsed, DUV light. A novel 90 degrees mirrored collection geometry is used to overcome the inner-filtering effects that plague Bush-probe geometries, The IUV fibers are characterized with respect to their efficacy at transmitting pulsed, DUV laser light, and prototype probes are used to obtain pulsed UVRRS data of aromatic amino acids, proteins, and hormones at low concentrations with 205-240-nm pulsed excitation. Efficient probe geometries and fabrication methods are presented. The performance of the probes In examining resonance-enhanced Raman signals from absorbing chromophores is investigated, and the optimal excitation wavelength is shown to be significantly red-shifted from the maximum of the resonance Raman enhancement profile. Generally applicable procedures for determining optimal experimental conditions are also introduced. (C) 1998 Optical Society of America. [References: 45]
机译:紫外线共振拉曼光谱法(UVRRS)能够确定有关低浓度水性生物分子的结构,环境和分析信息的能力使其成为一种强大的生物分析和生物物理技术。不幸的是,在大多数情况下,它的实用性受到实验要求的限制,而实验要求却不允许在原地或在副研究中使用。我们开发了第一批高性能光纤探头,该探头可长期用于深紫外(DUV,205-250 nm)的脉冲UVRRS应用中。这些探头采用了最近开发的改进的紫外线(IUV)纤维,这些纤维没有表现出快速的日晒作用和吞吐量衰减,而以前的光阻和吞吐量衰减并没有妨碍光纤用于传输脉冲DUV光。一种新颖的90度镜面反射收集几何形状被用来克服困扰布什探针几何形状的内部过滤效果。该IUV光纤在传输脉冲DUV激光方面的功效得到了表征,并且原型探针用于获得脉冲UVRRS 205-240 nm脉冲激发低浓度的芳香族氨基酸,蛋白质和激素的数据。提出了有效的探针几何形状和制造方法。研究了探针在检查来自吸收发色团的共振增强拉曼信号方面的性能,并且显示了最佳激发波长与共振拉曼增强曲线的最大值相比有明显的红移。还介绍了确定最佳实验条件的一般适用程序。 (C)1998年美国眼镜学会。 [参考:45]

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