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驯服非经典碳正离子以控制小环反应活性。

Taming nonclassical carbocations to control small ring reactivity.

作者信息

McNamee Ryan E, Frank Nils, Christensen Kirsten E, Duarte Fernanda, Anderson Edward A

机构信息

Chemistry Research Laboratory, Department of Chemistry, University of Oxford, 12 Mansfield Road, Oxford OX1 3TA, UK.

出版信息

Sci Adv. 2024 Jan 12;10(2):eadj9695. doi: 10.1126/sciadv.adj9695.

Abstract

Prediction of the outcome of ring opening of small organic rings under cationic conditions can be challenging due to the intermediacy of nonclassical carbocations. For example, the solvolysis of cyclobutyl or cyclopropylmethyl derivatives generates up to four products on nucleophilic capture or elimination via cyclopropylcarbinyl and bicyclobutonium ions. Here, we show that such reaction outcomes can be controlled by subtle changes to the structure of nonclassical carbocation. Using bicyclo[1.1.0]butanes as cation precursors, the regio- and stereochemistry of ring opening is shown to depend on the degree and nature of the substituents on the cationic intermediates. Reaction outcomes are rationalized using computational models, resulting in a flowchart to predict product formation from a given cation precursor.

摘要

由于非经典碳正离子的中间体存在,预测阳离子条件下小有机环开环的结果可能具有挑战性。例如,环丁基或环丙基甲基衍生物的溶剂解在通过环丙基甲基和双环丁鎓离子进行亲核捕获或消除时会产生多达四种产物。在这里,我们表明,这种反应结果可以通过对非经典碳正离子结构的细微变化来控制。使用双环[1.1.0]丁烷作为阳离子前体,开环的区域化学和立体化学显示取决于阳离子中间体上取代基的程度和性质。使用计算模型对反应结果进行了合理化分析,从而得到了一个流程图,用于预测给定阳离子前体的产物形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14c2/10786418/58abd8034153/sciadv.adj9695-f1.jpg

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