Photophysics and Photochemistry of Naphthoxazinone Derivatives
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2008-07-18Metadata
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Nonell, Santi
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Photophysics and Photochemistry of Naphthoxazinone Derivatives
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Abstract
The photophysics and photochemistry of a series of naphthoxazinones have been studied using a
combination of methods ranging from steady-state and time-resolved spectroscopic techniques to product
analysis. The photophysics of naphthoxazinone derivatives is very dependent on the structure:
phenanthrene-like compounds exhibit higher fluorescence quantum yield than the less aromatic anthracenelike
homologous. The latter, exhibit a substantial degree of charge transfer in the excited singlet state.
These compounds are fairly photostable in the absence of additives, yielding a single photoproduct arising
from the triplet state. The presence of electron donors such as amines increases the photoconsumption
quantum yield and changes the product distribution, the primary photoproduct being a dihydronaphthoxazinone
that photoreacts further yielding ultimately an oxazoline derivative.
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Financial support from FONDECYT
(grants 1050796 and 7060251)
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JOURNAL OF ORGANIC CHEMISTRY, Volume: 73, Issue: 14, Pages: 5371-5378, 2008
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