Steady-State and Transient Ultraviolet Resonance Raman Spectrometer for the 193–270 nm Spectral Region

Author:

Bykov Sergei1,Lednev Igor1,Ianoul Anatoli1,Mikhonin Aleksandr1,Munro Calum1,Asher Sanford A.1

Affiliation:

1. Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260 (S.B., A.M., S.A.A.); Department of Chemistry, University at Albany, SUNY, Albany, New York 12222 (I.L.); Department of Chemistry, Carleton University, Ottawa, ON K1S 5B6 Canada (A.I.); and PPG Industries, Allison Park, Pennsylvania 15101 (C.M.)

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 (∼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.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

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