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氮取代异氰酸酯的级联反应:杂环化学中的一种新工具。

Cascade reactions of nitrogen-substituted isocyanates: a new tool in heterocyclic chemistry.

作者信息

Vincent-Rocan Jean-François, Ivanovich Ryan A, Clavette Christian, Leckett Kyle, Bejjani Julien, Beauchemin André M

机构信息

Centre for Catalysis Research and Innovation , Department of Chemistry and Biomolecular Sciences , University of Ottawa , 10 Marie-Curie , Ottawa , ON K1N 6N5 , Canada . Email:

出版信息

Chem Sci. 2016 Jan 1;7(1):315-328. doi: 10.1039/c5sc03197d. Epub 2015 Sep 23.

Abstract

In contrast to normal -substituted isocyanates, nitrogen-substituted isocyanates (-isocyanates) are rare. Their high reactivity and amphoteric/ambident nature has prevented the scientific community from exploiting their synthetic potential. Recently, we have developed an formation approach using a reversible equilibrium, which allows controlled generation and reactivity of -isocyanates and prevents the dimerization that is typically observed with these intermediates. This blocked (masked) -isocyanate approach enables the use of various -isocyanate precursors to assemble heterocycles possessing the N-N-C[double bond, length as m-dash]O motif, which is often found in agrochemicals and pharmaceuticals. Cascade reactions for the rapid assembly of several valuable 5- and 6-membered heterocycles are reported, including amino-hydantoins, acyl-pyrazoles, acyl-phthalazinones and azauracils. Over 100 different compounds were synthesized using amino-, imino- and amido-substituted -isocyanates, demonstrating their potential as powerful intermediates in heterocyclic synthesis. Their reactivity also enables access to unprecedented bicyclic derivatives and to substitution patterns of azauracils that are difficult to access using known methods, illustrating that controlled reactivity of -isocyanates provides new disconnections, and a new tool to assemble complex N-N-C[double bond, length as m-dash]O containing motifs.

摘要

与普通的N-取代异氰酸酯不同,氮取代异氰酸酯(N-异氰酸酯)较为罕见。它们的高反应活性以及两性/双亲性质阻碍了科学界对其合成潜力的开发利用。最近,我们开发了一种利用可逆平衡的生成方法,该方法能够控制N-异氰酸酯的生成和反应活性,并防止这些中间体通常会出现的二聚化现象。这种被保护(掩蔽)的N-异氰酸酯方法使得能够使用各种N-异氰酸酯前体来组装具有N-N-C=O基序的杂环,该基序在农用化学品和药物中经常出现。本文报道了用于快速组装几种有价值的五元及六元杂环的串联反应,包括氨基乙内酰脲、酰基吡唑、酰基酞嗪酮和氮杂尿嘧啶。使用氨基、亚氨基和酰胺基取代的N-异氰酸酯合成了100多种不同的化合物,证明了它们作为杂环合成中强大中间体的潜力。它们的反应活性还使得能够获得前所未有的双环衍生物以及使用已知方法难以获得的氮杂尿嘧啶取代模式,这表明N-异氰酸酯的可控反应活性提供了新的断键方式,以及一种组装复杂的含N-N-C=O基序的新工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c37/5952554/b8ae2a0d1c31/c5sc03197d-s1.jpg

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