Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/3318
Title: Secondary Interactions Arrest the Hemiaminal Intermediate To Invert the Modus Operandi of Schiff Base Reaction: A Route to Benzoxazinones
Authors: Patel, Ketan
Deshmukh, Satej S.
Bodkhe, Dnyaneshwar
Mane, Manoj
Vanka, Kumar
Shinde, Dinesh
Rajamohanan, Pattuparambil R.
NANDI, SHYAMAPADA
VAIDHYANATHAN, RAMANATHAN
Chikkali, Samir H.
Dept. of Chemistry
Keywords: Condensation
Amine
Aldehyde
Benzoxazinone
Benzoxazinone
2017
Issue Date: Apr-2017
Publisher: American Chemical Society
Citation: Journal of Organic Chemistry, 82 (8), 4342-4351.
Abstract: Discovered by Hugo Schiff, condensation between amine and aldehyde represents one of the most ubiquitous reactions in chemistry. This classical reaction is widely used to manufacture pharmaceuticals and fine chemicals. However, the rapid and reversible formation of Schiff base prohibits formation of alternative products, of which benzoxazinones are an important class. Therefore, manipulating the reactivity of two partners to invert the course of this reaction is an elusive target. Presented here is a synthetic strategy that regulates the sequence of Schiff base reaction via weak secondary interactions. Guided by the computational models, reaction between 2,3,4,5,6-pentafluoro-benzaldehyde with 2-amino-6-methylbenzoic acid revealed quantitative (99%) formation of 5-methyl-2-(perfluorophenyl)-1,2-dihydro-4H-benzo[d][1,3]oxazin-4-one (15). Electron donating and electron withdrawing ortho-substituents on 2-aminobenzoic acid resulted in the production of benzoxazinones 9-36. The mode of action was tracked using low temperature NMR, UV-vis spectroscopy, and isotopic (18O) labeling experiments. These spectroscopic mechanistic investigations revealed that the hemiaminal intermediate is arrested by the hydrogen-bonding motif to yield benzoxazinone. Thus, the mechanistic investigations and DFT calculations categorically rule out the possibility of in situ imine formation followed by ring-closing, but support instead hydrogen-bond assisted ring-closing to prodrugs. This unprecedented reaction represents an interesting and competitive alternative to metal catalyzed and classical methods of preparing benzoxazinone.
URI: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/3318
https://doi.org/10.1021/acs.joc.7b00352
ISSN: 0022-3263
1520-6904
Appears in Collections:JOURNAL ARTICLES

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