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基于六氰合铁(II)酸钾的氰化在苯甲腈及其杂环类似物合成中的底物范围的改善。

Improved Substrate Scope in the Potassium Hexacyanoferrate(II)-Based Cyanation for the Synthesis of Benzonitriles and Their Heterocyclic Analogues.

机构信息

Eli Lilly and Company , Erl Wood Manor, Sunninghill Road , Windlesham, Surrey GU20 6PH , United Kingdom.

AMRI UK, Ltd. , Erl Wood Manor, Sunninghill Road , Windlesham, Surrey GU20 6PH , United Kingdom.

出版信息

J Org Chem. 2018 May 4;83(9):4922-4931. doi: 10.1021/acs.joc.8b00515. Epub 2018 Apr 12.

DOI:10.1021/acs.joc.8b00515
PMID:29630840
Abstract

The use of Pd(DPEPhos)Cl (P26) as a catalyst for the formation of benzonitriles and their heterocyclic analogues provides excellent complementarity to existing catalysts, allowing highly electron-deficient heterocyclic aryl halides to be efficiently converted to the corresponding nitriles using K[Fe(CN)]) as cyanide source. This catalyst significantly enhances the scope of this reaction to include a number of substrates that are highly relevant for pharmaceutical and agrochemical applications. Importantly, not only does this cyanation method employ a nontoxic cyanide source, simple semiquantitative testing suggests that, unlike many other methods, no free cyanide is present in the reaction mixture or during a variety of potential workups, thus improving the safety aspects of this method from initial setup through to product isolation. Finally, developing and testing a series of convenient cyanation kits has allowed facile application and broader adoption of this method in our laboratories.

摘要

Pd(DPEPhos)Cl (P26) 用作形成苯甲腈及其杂环类似物的催化剂,与现有催化剂形成极好的互补,可使用 K[Fe(CN)6] 作为氰源高效地将高度缺电子杂环芳基卤化物转化为相应的腈。该催化剂极大地扩展了该反应的范围,包括许多对于药物和农用化学品应用非常重要的底物。重要的是,这种氰化方法不仅使用无毒的氰源,而且简单的半定量测试表明,与许多其他方法不同,在反应混合物中或在各种潜在的后处理过程中都没有游离氰化物,从而提高了该方法从初始设置到产品分离各个阶段的安全性。最后,开发和测试一系列方便的氰化试剂盒使得该方法在我们的实验室中易于应用和更广泛地采用。

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