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Measurement of Raman Optical Activity with High-Frequency Polarization Modulation

Additional information

Authors
Lightner C. R. ., Gisler D., Meyer S. A. ., Niese H., Keitel R. C. ., Norris D. J. .
Type
Journal Article
Year
2021
Language
English
Abstract
Many chiroptical spectroscopic techniques have been developed to detect chirality in molecular species and probe its role in biological processes. Raman optical activity (ROA) should be one of the most powerful methods, as ROA yields vibrational and chirality information simultaneously and can measure analytes in aqueous and biologically relevant solvents. However, despite its promise, the use of ROA has been limited, largely due to challenges in instrumentation. Here, we report a new approach to ROA that exploits high-frequency polarization modulation. High-frequency polarization modulation, usually implemented with a photoelastic modulator (PEM), has long been the standard technique in other chiroptical spectroscopies. Unfortunately, the need for simultaneous spectral and polarization resolution has precluded the use of PEMs in ROA instruments. We combine a specialized camera system (the Zurich imaging polarimeter, or ZIMPOL) with PEM modulation to perform ROA measurements. We demonstrate performance similar to the current standard in ROA instrumentation while reducing complexity and polarization artifacts. This development should aid researchers in exploiting the full potential of ROA for chemical and biological analysis.
Journal
Journal of Physical Chemistry A
Volume
125
Number
36
Start page number
8132
End page number
8139
Keywords
irsol-refereed-scientific-papers