The catalytic asymmetric aza-Michaelreaction of benzoyl hydrazine toward chalcones through the nonactivated amine moiety conjugated addition was facilitated by the developed N,N'-dioxide-Sc(OTf)(3) complex under mild conditions, affording the pharmacologically and synthetically useful products in moderate to high yields with up to 97% ee.
2-Trichloroethylideneacetophenones reacted with benzamidines leading to novel 2,6-diaryl-6-hydroxy-4-trichloromethyl-1,4,5,6-tetrahydropyrimidines in near quantitative yields. These compounds were efficiently dehydrated to obtain previously unknown 2,4-diaryl-6-trichloromethyl-1,6-dihydropyrimidines, which were able to undergo aromatisation via chloroform elimination to give 2,4-diarylpyrimidines in high
A newsynthetic method in pyrimidine chemistry has been developed. 2,2,2-Trichloroethylideneacetophenones, easily available from chloral and acetophenones, reacted with benzamidines to provide novel 2,6-diaryl-6-hydroxy-4-trichloromethyl-1,4,5,6-tetrahydropyrimidines in near quantitative yields. Efficient dehydration of these compounds gave previously unknown 2,4-diaryl-6-trichloromethyl-1,6-dihydropyrimidines
Changing stereoselectivity and regioselectivity in copper(<scp>i</scp>)-catalyzed 5-<i>exo</i> cyclization by chelation and rigidity in aminoalkyl radicals: synthesis towards diverse bioactive N-heterocycles
作者:Sandhya Sadanandan、Dharmendra Kumar Gupta
DOI:10.1039/c9nj05166j
日期:——
Chelation, rigidity and carbon-radical positions in aminoalkyl precursors disturb the usual 2,4-trans diastereoselectivity and 5-exo mode in Cu(i)-catalyzed ATRC.
The N,N′-dioxide–Sc(OTf)3 complex was applied in the asymmetric Michael reaction of 1H-benzotriazole with chalcones to give the corresponding N-1 products in excellent yields (up to 99 %) with excellent enantioselectivities (up to 99 % ee). Further transformation into other optically active derivatives such as β-benzotriazolyl ester, alcohol, and amide were also realized with excellent results.