Comparison of the absorption, emission, and resonance Raman spectra of 7-hydroxyquinoline and 8-bromo-7-hydroxyquinoline caged acetate.


TitleComparison of the absorption, emission, and resonance Raman spectra of 7-hydroxyquinoline and 8-bromo-7-hydroxyquinoline caged acetate.
Publication TypeJournal Article
Year of Publication2011
AuthorsMa, Jiani, Cheng Shun Cheung, An Hui-Ying, Li Ming-De, Ma Chensheng, Rea Adam C., Zhu Yue, Nganga Jameil L., Dore Timothy M., and Phillips David Lee
JournalThe journal of physical chemistry. A
Volume115
Issue42
Pagination11632-40
Date Published2011 Oct 27
ISSN1520-5215
KeywordsAcetates, Bromides, Chemistry, Physical, Hydrogen-Ion Concentration, Hydroxyquinolines, Kinetics, Molecular Structure, Photoelectron Spectroscopy, Protons, Solutions, Solvents, Spectrometry, Fluorescence, Spectrum Analysis, Raman, Vibration, Water
Abstract

To better understand the deprotection reaction of the new promising phototrigger compound BHQ-OAc (8-bromo-7-hydroxyquinoline acetate), we present a detailed comparison of the UV-vis absorption, resonance Raman, and fluorescence spectra of BHQ-OAc with its parent compound 7-hydroxyquinoline in different solvents. The steady-state absorption and resonance Raman spectra provide fundamental information about the structure, properties, and population distribution of the different prototropic forms present under the different solvent conditions examined. The species present in the excited states that emit strongly were detected by fluorescence spectra. It is shown that the ground-state tautomerization process of BHQ-OAc is disfavored compared with that of 7-HQ in aqueous solutions. The observation of the tautomeric form of BHQ-OAc in neutral aqueous solutions demonstrates the occurrence of the excited-state proton-transfer process, which would be a competing process for the deprotection reaction of BHQ-OAc in aqueous solutions.

DOI10.1021/jp2063172
Alternate JournalJ Phys Chem A