The use of supported Cu complex on mesoporous as a novel, efficient, heterogeneous, reusable and green catalyst for the synthesis of spiro‐dihydrofuran derivatives is reported. This methodology is effective for the reaction of dimedone with a wide range of aldehyde in the presence of BrCN and triethylamine. The structure of catalyst was characterized by different techniques such as EDX, SEM, TGA, ICP‐OES
Reaction of 5,5-dimethylcyclohexane-1,3-dione (dimedone), aldehydes and cyanogen bromide in the presence of triethylamine leads to the selective formation of spiro dihydrofurans in moderate to good yields at room temperature.
Selective Formation of Spiro Dihydrofurans and Cyclopropanes Through Unexpected Reaction of Aldehydes with 1,3-Dicarbonyl Compounds
作者:Guan-Wu Wang、Jie Gao
DOI:10.1021/ol900451d
日期:2009.6.4
5-dimethylcyclohexane-1,3-dione and 1,3-indandione to selectively afford spirodihydrofuran and cyclopropane derivatives, promoted by molecular iodine and dimethylaminopyridine under mechanical milling conditions, has been demonstrated. The products were obtained in good to excellent yields. A possible mechanism of this unusual reaction process is proposed.
A New Iodonium Ylide-Based Three-Component Reaction Leading to 2-Spirosubstituted Dihydrofurans under Microwave Irradiation
作者:Xing-Chao Tu、Yan Yu、Man-Su Tu、Bo Jiang、Chao Li、Shu-Jiang Tu
DOI:10.1002/jhet.1732
日期:2014.3
A new iodonium ylide‐based three‐component reaction for the synthesis of highly functionalized 2‐spirosubstituted dihydrofurans starting from readily available common reactants has been developed undermicrowaveirradiation. The procedure is facile, avoiding time‐consuming and costly syntheses, tedious work‐up and purifications of precursors as well as protection/deprotection of functional groups.