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Regioselective molybdenum-catalyzed allylic substitution of tertiary allylic electrophiles: methodology development and applications

机译:区域选择性钼催化的烯丙基替代的叔烯丙基电泳剂:方法论发展和应用

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The first molybdenum-catalyzed allylic sulfonylation of tertiary allylic electrophiles is described. The method employs a readily accessible catalyst (Mo(CO) _(6) /2,2′-bipyridine, both are commercially available) and represents the first example of the use of a group 6 transition metal-catalyst for allylic sulfonylation of substituted tertiary allylic electrophiles to form carbon–sulfur bonds. This atom economic and operationally simple methodology is characterized by its relatively mild conditions, wide substrate scope, and excellent regioselectivity profile, thus unlocking a new platform to forge sulfone moieties, even in the context of late-stage functionalization and providing ample opportunities for further derivatization through traditional Suzuki cross-coupling reactions.
机译:描述了第一种钼催化的叔烯丙基电泳烯丙基磺酰化。该方法采用易于可访问的催化剂(Mo(CO)_(6)/ 2,2'-硼啶,两者都是可商购的),并且代表使用基团6过渡金属催化剂用于烯丙基磺酰化取代的烯丙基化的第一实施例叔烯丙基电子单形成碳硫键。这种原子经济和操作简单的方法特征在于其相对温和的条件,宽的基板范围和优异的区域选择性概况,从而解锁了一种新的平台,即使在晚期的官能化的背景下也是为了进一步衍生化的充分机会,即使在阶段的官能化的背景下也是为了进一步衍生的机会通过传统的铃木交叉偶联反应。

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