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用于193 - 270纳米光谱区域的稳态和瞬态紫外共振拉曼光谱仪。

Steady-state and transient ultraviolet resonance Raman spectrometer for the 193-270 nm spectral region.

作者信息

Bykov Sergei, Lednev Igor, Ianoul Anatoli, Mikhonin Aleksandr, Munro Calum, Asher Sanford A

机构信息

Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.

出版信息

Appl Spectrosc. 2005 Dec;59(12):1541-52. doi: 10.1366/000370205775142511.

Abstract

We describe a state-of-the-art tunable ultraviolet (UV) Raman spectrometer for the 193-270 nm spectral region. This instrument allows for steady-state and transient UV Raman measurements. We utilize a 5 kHz Ti-sapphire continuously tunable laser (approximately 20 ns pulse width) between 193 nm and 240 nm for steady-state measurements. For transient Raman measurements we utilize one Coherent Infinity YAG laser to generate nanosecond infrared (IR) pump laser pulses to generate a temperature jump (T-jump) and a second Coherent Infinity YAG laser that is frequency tripled and Raman shifted into the deep UV (204 nm) for transient UV Raman excitation. Numerous other UV excitation frequencies can be utilized for selective excitation of chromophoric groups for transient Raman measurements. We constructed a subtractive dispersion double monochromator to minimize stray light. We utilize a new charge-coupled device (CCD) camera that responds efficiently to UV light, as opposed to the previous CCD and photodiode detectors, which required intensifiers for detecting UV light. For the T-jump measurements we use a second camera to simultaneously acquire the Raman spectra of the water stretching bands (2500-4000 cm(-1)) whose band-shape and frequency report the sample temperature.

摘要

我们描述了一种用于193 - 270纳米光谱区域的先进可调谐紫外(UV)拉曼光谱仪。该仪器可进行稳态和瞬态紫外拉曼测量。对于稳态测量,我们使用一台5千赫兹的钛宝石连续可调谐激光器(脉冲宽度约为20纳秒),其波长在193纳米至240纳米之间。对于瞬态拉曼测量,我们使用一台相干Infinity YAG激光器产生纳秒红外(IR)泵浦激光脉冲以产生温度跃升(T - jump),以及另一台相干Infinity YAG激光器,其频率三倍频并拉曼频移至深紫外(204纳米)用于瞬态紫外拉曼激发。许多其他紫外激发频率可用于瞬态拉曼测量中发色团的选择性激发。我们构建了一个减法色散双单色仪以最小化杂散光。我们使用一种新型电荷耦合器件(CCD)相机,它能有效地响应紫外光,这与之前的CCD和光电二极管探测器不同,后者检测紫外光需要增强器。对于T - jump测量,我们使用另一台相机同时采集水伸缩振动带(2500 - 4000厘米⁻¹)的拉曼光谱,其谱带形状和频率反映样品温度。

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