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Racemic hemiacetals as oxygen-centered pronucleophiles triggering cascade 1,4-addition/Michael reaction through dynamic kinetic resolution under iminium catalysis. Development and mechanistic insights

机译:外消旋半缩醛以氧为中心的亲核试剂通过亚胺催化下的动态动力学拆分触发级联1,4-加成/迈克尔反应。发展和机械洞察力

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摘要

2-Hydroxydihydropyran-5-ones behave as excellent polyfunctional reagents able to react with enals through oxa-Michael/Michael process cascade under the combination of iminium and enamine catalysis. These racemic hemiacetalic compounds are used as unconventional O-pronucleophiles in the initial oxa-Michael reaction, also leading to the formation of a single stereoisomer under a dynamic kinetic resolution (DKR) process. Importantly, by using β-aryl or β-alkyl substituted α,β-unsaturated substrates as initial Michael acceptors either kinetically or thermodynamically controlled diastereoisomers were formed with high stereoselection through the careful selection of the reaction conditions. Finally, a complete experimental and computational study confirmed the initially proposed DKR process during the catalytic oxa-Michael/Michael cascade reaction and also explained the kinetic/thermodynamic pathway operating in each case.
机译:2-羟基二氢吡喃-5-酮是出色的多官能试剂,能够在亚胺和烯胺催化的结合下,通过oxa-Michael / Michael过程级联与烯类反应。这些外消旋半缩醛化合物在初始oxa-Michael反应中用作非常规的O-原核亲核试剂,还导致在动态动力学拆分(DKR)过程下形成单个立体异构体。重要的是,通过使用β-芳基或β-烷基取代的α,β-不饱和底物作为初始迈克尔受体,通过仔细选择反应条件,以高立体选择性形成了动力学或热力学控制的非对映异构体。最后,完整的实验和计算研究证实了在催化的oxa-Michael / Michael级联反应中最初提出的DKR过程,并解释了每种情况下的动力学/热力学途径。

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