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首页> 外文期刊>Bulletin of the Korean Chemical Society >Theoretical Mechanism Studies on the Enantioselectivity of aza-MBH-type Reaction of Nitroalkene to N-tosylimine Catalyzed by Thiourea-tertiary Amine
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Theoretical Mechanism Studies on the Enantioselectivity of aza-MBH-type Reaction of Nitroalkene to N-tosylimine Catalyzed by Thiourea-tertiary Amine

机译:硫脲-叔胺催化硝基烯烃氮杂-MBH型反应生成N-甲苯胺的对映选择性的理论机理研究

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摘要

The enantioselective aza-Morita Baylis Hillman reaction of nitroalkene and N-tosylimine catalyzed by thiourea-tertiary amine has been investigated using density functional theory. Enantioselectivity is dominated by the cooperative effect of non-covalent and weak covalent interactions imposed by different units of catalyst. As Lewis base, the tertiary amine unit activates nitroalkene via weak covalent bond. The weak covalent interaction orients the reaction in a major path with smaller variations of this bond. The aromatic ring unit activates N-tosylimine via n-n stacking. The non-covalent interaction selects the major path with smaller changes of the efficient packing areas. Thiourea unit donates more compact H-bonded network for species of the major path. The calculated ee value in xylene solution phase (97.6%) is much higher than that in N,N-Dimethylformamide (27.2%). Our conclusion is also supported by NBO analysis.
机译:利用密度泛函理论研究了硫脲-叔胺催化的硝基烯烃与N-甲苯磺胺的对映选择性氮杂-Morita Baylis Hillman反应。对映选择性受催化剂的不同单元施加的非共价和弱共价相互作用的协同作用支配。作为路易斯碱,叔胺单元通过弱共价键激活硝基烯烃。弱的共价相互作用使该反应的主要变化方向较小。芳族环单元通过n-n堆叠激活N-甲苯胺。非共价相互作用选择有效填充面积变化较小的主要途径。硫脲单元为主要路径的物种捐赠了更紧凑的氢键网络。在二甲苯溶液相中计算的ee值(97.6%)远高于在N,N-二甲基甲酰胺中的ee值(27.2%)。 NBO分析也支持我们的结论。

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