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通过亚氨基连接的二氢吡啶的光氧化还原环化反应便捷地合成饱和含氮杂环化合物。

Expedient access to saturated nitrogen heterocycles by photoredox cyclization of imino-tethered dihydropyridines.

作者信息

Bissonnette Noah B, Ellis J Michael, Hamann Lawrence G, Romanov-Michailidis Fedor

机构信息

Celgene Corporation , 200 Cambridge Park Drive, Suite 3000 , Cambridge , MA 02140 , USA . Email:

出版信息

Chem Sci. 2019 Aug 28;10(41):9591-9596. doi: 10.1039/c9sc03429c. eCollection 2019 Nov 7.

Abstract

A large proportion of medicinally relevant molecules bear nitrogen and sp-hybridized carbon functionalities. Overwhelmingly, these atoms are found as part of (hetero)cyclic structures. Despite their importance, synthetic approaches to saturated nitrogen heterocycles are limited to several established stoichiometric alkylation techniques, as well as a few methods involving C-H bond activation. The synthetic community remains interested in more general, mild, and sustainable ways to access these motifs. Here we describe a dual-catalyst system composed of an iridium photocatalyst and a lithium phosphate base that is capable of selectively homolyzing the N-H bond of 4-alkyl-1,4-dihydropyridines, presumably by proton-coupled-electron-transfer (PCET), and mediating efficient cyclization of the resultant carbon-centered radicals with tethered imines. The outcome of this transformation is access to a broad range of structurally complex nitrogen heterocycles obtainable from simple aldehyde starting materials in a highly chemoselective manner.

摘要

很大一部分具有药用价值的分子含有氮和sp杂化碳官能团。绝大多数情况下,这些原子作为(杂)环结构的一部分存在。尽管它们很重要,但合成饱和氮杂环的方法仅限于几种成熟的化学计量烷基化技术,以及一些涉及C-H键活化的方法。合成化学界仍然对获得这些结构单元的更通用、温和且可持续的方法感兴趣。在此,我们描述了一种由铱光催化剂和磷酸锂碱组成的双催化剂体系,该体系能够选择性地使4-烷基-1,4-二氢吡啶的N-H键均裂,推测是通过质子耦合电子转移(PCET),并介导所得碳中心自由基与连接的亚胺进行高效环化。这种转化的结果是能够以高度化学选择性的方式从简单的醛起始原料获得多种结构复杂的氮杂环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee3f/6993613/d1cb2bba9c47/c9sc03429c-s1.jpg

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