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Toward Catalytic EnantioselectiveChlorolactonizationof 12-Disubstituted Styrenyl Carboxylic Acids

机译:走向催化对映选择性乙酰化12-二取代苯乙烯基羧酸

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摘要

An investigation into the use of Lewis base catalysis for the enantioselective chlorolactonization of 1,2-disubstituted alkenoic acids is described. Two mechanistically distinct reaction pathways for catalytic chlorolactonization have been identified. Mechanistic investigation revealed that tertiary amines predominately operate as Brønsted rather than Lewis bases. Two potential modes of activation have been identified that involve donation of electron density of the carboxylate to the C=C bond as well hydrogen bonding to the chlorinating agent. Sulfur- and selenium-based additives operate under Lewis base catalysis; however, due to the instability of the intermediate benzylic chloriranium ion, chlorolactonization suffers from low chemo-, diastereo-, and enantioselectivities. Independent generation of the benzylic chloriranium ion shows that it is in equilibrium with an open cation, which leads to low specificities in the nucleophilic capture of the intermediate.
机译:描述了对路易斯碱催化用于1,2-二取代链烯酸的对映选择性氯内酯化的研究。已经确定了催化氯内酯化的两种机理不同的反应途径。机理研究表明,叔胺主要以布朗斯台德而不是路易斯碱的形式起作用。已经确定了两种潜在的活化方式,涉及将羧酸盐的电子密度提供给C = C键以及将氢键提供给氯化剂。硫和硒基添加剂在路易斯碱催化下运行;然而,由于中间体苄基氯鎓离子的不稳定性,氯内酯化具有较低的化学选择性,非对映异构性和对映选择性。苄基氯鎓离子的独立生成表明它与开放阳离子处于平衡状态,这导致中间体的亲核捕获过程中的特异性较低。

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