V-Shaped Bis-Coumarins: Synthesis and Optical Properties
V-образные бис-кумарины: синтез и оптические свойства
2014-08-18
SCID: 54.1/h5ya7rgv
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Lewis acid catalysisbis-coumarinschromeno[3,4-c]chromene-6,7-dionesfluorescence propertiesintramolecular conjugate addition
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Abstract (AI)
A highly efficient procedure for the synthesis of bis-coumarins fused at the pyranone ring has been developed. The electron-rich phenols reacted with esters of coumarin-3-carboxylic acids, leading to substituted chromeno[3,4-c]chromene-6,7-diones. The reaction is catalyzed by both Lewis acids and 4-dimethylaminopyridine. The most probable mechanistic pathway involves Lewis acid catalyzed or DMAP catalyzed transesterification, followed by intramolecular conjugate addition of α,β-unsaturated esters to phenols and subsequent oxidation of the initially formed intermediate. The reaction is compatible with various functionalities such as NO2, Br, and OMe. Not only benzene derivatives but also dihydroxynaphthalenes are reactive in this reaction, and the structure of the product can be controlled by adjusting the reaction conditions. Furthermore, a double addition is possible, leading to a horseshoe-shaped system comprised of seven conjugated rings. Compounds with four structurally unique skeletons have been obtained and have been shown to strongly absorb in the violet, blue, and/or green regions of the visible spectrum. Most of them display strong greenish yellow fluorescence, which can be modulated by both structural changes and the character of the solvents. Again, introduction of an electron-donating group in the chromeno[3,4-c]chromene-6,7-diones caused a significant red shift in both the absorption and emission maxima, and the effect became especially noteworthy in the case of amino substituents.
Key Findings
1
An efficient Lewis acid/DMAP-catalyzed synthesis produces substituted chromeno[3,4-c]chromene-6,7-diones from electron-rich phenols and coumarin-3-carboxylate esters.
2
Double addition enables formation of a horseshoe-shaped molecule containing seven conjugated rings, yielding four distinct molecular skeletons.
3
The products strongly absorb violet, blue, and/or green light and generally show tunable greenish-yellow fluorescence; electron-donating groups, especially amino substituents, cause pronounced red shifts in absorption and emission.
4
The proposed mechanism involves transesterification, intramolecular conjugate addition to phenols, and oxidation of the initially formed intermediate.
5
The reaction tolerates NO2, Br, and OMe functionalities, includes dihydroxynaphthalenes, and permits product-structure control through reaction conditions.
Research Object
V-shaped bis-coumarins, including substituted chromeno[3,4-c]chromene-6,7-diones and related horseshoe-shaped fused-ring systems
Research Subject
Their synthesis, structural diversification, visible-light absorption, fluorescence, and modulation of optical properties by substituents and solvents
Publication Details
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2014-08-18
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