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

机译:氮取代异氰酸酯的级联反应:杂环化学的新工具

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摘要

In contrast to normal C-substituted isocyanates, nitrogen-substituted isocyanates (N-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 in situ formation approach using a reversible equilibrium, which allows controlled generation and reactivity of N-isocyanates and prevents the dimerization that is typically observed with these intermediates. This blocked (masked) N-isocyanate approach enables the use of various N-isocyanate precursors to assemble heterocycles possessing the N–N–CO 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 N-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 N-isocyanates provides new disconnections, and a new tool to assemble complex N–N–CO containing motifs.
机译:与常规的C-取代的异氰酸酯相反,氮-取代的异氰酸酯(N-异氰酸酯)是罕见的。它们的高反应性和两性/环境性质阻止了科学界开发其合成潜能。最近,我们开发了一种使用可逆平衡的原位形成方法,该方法可控制N-异氰酸酯的生成和反应,并防止这些中间体通常观察到的二聚作用。这种封闭的(掩盖的)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 <!-private-char pc1-> O基序的杂环,这在农用化学品和药品中经常见到。据报道,级联反应可快速组装一些有价值的5和6元杂环,包括氨基乙内酰脲,酰基吡唑,酰基邻苯二氮酮和氮杂尿嘧啶。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的中间体的潜力。它们的反应性还使人们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嘧啶的取代模式,这说明N-异氰酸酯的受控反应性提供了新的断开连接,以及组装复杂的N–C–C <! --private-char pc1->包含主题的O。

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