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Zirconocene-Mediated Carbonylative Coupling of Grignard Reagents

机译:锆偶联介导的格氏试剂的羰基化偶联

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摘要

Organozirconocenes are versatile synthetic intermediates that can undergo carbonylation to yield acyl anion equivalents. Zirconocene hydrochloride ([Cp2ZrHCl]) is often the reagent of choice for accessing these intermediates but generates organozirconocenes only from alkenes and alkynes. This requirement eliminates a broad range of substrates. For example, organozirconocenes in which the zirconium center is bonded to an aromatic ring, a benzylic group, or an alkyl group that possesses a tertiary or quaternary carbon atom a to the carbon-zirconium bond can not be formed in this way. To provide more generalized access to acyl zirconium reagents, we explored the transmetalation of Grignard reagents with zirconocene dichloride under a CO atmosphere. This protocol generates acyl zirconium(IV) complexes that are inaccessible with the Schwartz reagent, including those derived from secondary and tertiary alkyl and aryl Grignard reagents.
机译:有机锆是通用的合成中间体,可以经历羰基化以产生酰基阴离子等同物。 盐酸锆([CP2ZRHCL])通常是进入这些中间体的选择的试剂,但仅从烯烃和炔烃产生有机锆。 该要求消除了广泛的基材。 例如,其中锆中心与芳族环,苄基团或具有叔季碳原子A的烷基键合的有机锆偶联,不能以这种方式形成。 为了提供更广泛的酰基锆试剂的进入,我们探讨了在CO气氛下用锆茂的锆茂偶二氯化物的格氏试剂的透明化。 该方案产生与Schwartz试剂无法访问的酰基锆(IV)配合物,包括衍生自二级和叔烷基和芳基格氏试剂的络合物。

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