Pd-catalyzed cyanation of arenediazonium tetrafluoroborate derivatives with 2-(piperidin-1-yl)acetonitrile as a cyano source under mild conditions

IF 2.2 4区 化学 Q2 CHEMISTRY, ORGANIC Synthesis-Stuttgart Pub Date : 2022-02-14 DOI:10.1055/a-1770-8592
Muhammad Siddique, Z. Shafiq, K. Meguellati
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Abstract

The present study reports an organic cyano reagent (CN), 2-(piperidin-1-yl)acetonitrile which can cyanate commercially aryldiazonium tetrafluoroborate derivatives with a palladium catalyst under mild reaction conditions. A large substrate scope for the Pd-catalyzed cyanation of aromatic diazonium substrates was found, yielding nitrile-containing products in medium to high yields (59%‒92%). This methodlogy was employed for the preparation of etravirine and for the transformations of 2-cyanoindole which are used as anti-AIDS, NMDA receptor antagonists and have a high potential against mutant HIV strains. The mechanism of this Pd-catalyzed cyanation of aryldiazonium tetrafluoroborate derivatives involved CN- ions and was proved by paper indicator strategy. However, this Pd/(Me3Si)2 system has been identified to cleave C−CN bonds at low temperature and transferred the CN group to aryl rings of diazonium substrates in one pot.
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以2-(哌啶-1-酰基)乙腈为氰化物源,钯催化四氟硼酸芳胺重氮衍生物的氰化反应
本研究报道了一种有机氰化试剂(CN), 2-(哌啶-1-酰基)乙腈,它可以在温和的钯催化剂下,在温和的反应条件下氰化商业芳基重氮四氟硼酸盐衍生物。发现钯催化芳香族重氮基物氰化反应的底物范围大,产率中至高(59%-92%),含腈产物。该方法用于制备依曲维碱和2-氰吲哚的转化,用于抗艾滋病,NMDA受体拮抗剂,对突变型HIV株具有很高的潜力。钯催化四氟硼酸芳基重氮衍生物氰化反应的机理涉及CN离子,并通过纸张指示剂策略进行了验证。然而,Pd/(Me3Si)2体系在低温下可以切割C - CN键,并在一个锅中将CN基团转移到重氮基的芳基环上。
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来源期刊
Synthesis-Stuttgart
Synthesis-Stuttgart 化学-有机化学
CiteScore
4.50
自引率
7.70%
发文量
435
审稿时长
1 months
期刊介绍: SYNTHESIS is an international full-paper journal devoted to the advancement of the science of chemical synthesis. It covers all fields of organic chemistry involving synthesis, including catalysis, organometallic, medicinal, biological, and photochemistry, but also related disciplines. SYNTHESIS provides dependable research results with detailed and reliable experimental procedures and full characterization of all important new products as well as scientific primary data.
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