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Enantioselective, Organocatalytic Morita-Baylis-Hillman and Aza-Morita-Baylis-Hillman Reactions: Stereochemical Issues

机译:对映选择性,有机催化森田-贝利斯-希尔曼和氮杂-森田-贝利斯-希尔曼反应:立体化学问题

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Conscious of the importance that stereochemical issues may have on the design of efficient organocatalyts for both Morita-Baylis-Hillman and aza-Morita-Baylis-Hillman reaction we have analyzed them in this minireview. The so-called standard reactions involve “naked” enolates which therefore should lead to the syn adducts as the major products, irrespective of the E, Z stereochemistry of the enolate. Accordingly, provided the second step is rate determining step, the design of successful bifunctional or polyfunctional catalysts has to consider the geometrical requirements imposed by the transition structures of the second step of these reactions. On the other hand, MBH and aza-MBH reactions co-catalyzed by (S)-proline and a secondary or tertiary amine (co-catalyst) involve the aldol-type condensation of either a 3-amino-substituted enamine, dienamine, or both, depending on the cases. A Zimmerman-Traxler mechanism defines the stereochemical issues regarding these co-catalyzed condensations which parallel those of the well established (S)-proline catalyzed aldol-like reactions.
机译:意识到立体化学问题对于Morita-Baylis-Hillman和aza-Morita-Baylis-Hillman反应的有效有机催化剂的设计可能具有的重要性,我们在本次迷你回顾中对它们进行了分析。所谓的标准反应涉及“裸露”的烯醇盐,因此,无论该烯醇盐的E,Z立体化学如何,其都应以合成加合物为主要产物。因此,如果第二步骤是速率确定步骤,则成功的双官能或多官能催化剂的设计必须考虑由这些反应的第二步骤的过渡结构所施加的几何要求。另一方面,由(S)-脯氨酸和仲或叔胺(助催化剂)共同催化的MBH和氮杂-MBH反应涉及3-氨基取代的烯胺,二烯胺或烯丙基的缩醛型缩合。两者,视情况而定。 Zimmerman-Traxler机制定义了与这些共催化缩合有关的立体化学问题,这些问题与已确立的(S)-脯氨酸催化的醛醇缩合反应相似。

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