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首页> 外文期刊>The Journal of Organic Chemistry >l,3-Diaza-l,3-butadienes. Synthesis and Conversion into Pyrimidines by [4π + 2π] Cycloaddition with Electron Deficient Acetylenes. Synthetic Utility of 2-(Trichloromethyl)pyrimidines
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l,3-Diaza-l,3-butadienes. Synthesis and Conversion into Pyrimidines by [4π + 2π] Cycloaddition with Electron Deficient Acetylenes. Synthetic Utility of 2-(Trichloromethyl)pyrimidines

机译:1,3-二氮杂-1,3-丁二烯。 [4π+2π]与电子不足的乙炔的环加成反应合成并转化为嘧啶。 2-(三氯甲基)嘧啶的合成效用

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摘要

Methods have been devised to generate 1H-1,3-diaza-1,3-butadienes bearing a leaving group at position-4 in latent, masked, and unprotected forms. A hallmark of these azadienes is that they undergo thermal [4π + 2π] cycloaddition reactions with electron deficient acetylenes to give adducts which are aromatized to pyrimidine derivatives under the reaction conditions. Thus, 1-(methoxy-carbonyl)-3-acylamidines 17 on heating in solution are converted in situ into the 1,3-diaza-1,3-dienes 18 and/or 19 which react with dimethyl acetylenedicarboxylate (DMAD) to produce the pyrimidines 20. The 1-Boc-1,3-diaza-1,3-dienes 24 are masked forms of the 1H-dienes inasmuch as they react-with DMAD under relatively mild conditions to give the dihydropyrimidine adducts 25, which are easily detectable by ~1H NMR spectroscopy, and which aromatize to pyrimidines 26 at higher temperatures. The 4-methylthio compounds 31 and 33, and the 2-(trichloromethyl) compounds 37, are isolable, relatively stable, 1H-1,3-diaza-l,3-butadienes. These easily prepared compounds react with electron deficient acetylenes under mild conditions to provide the pyrimidines 20, 34, and 38, respectively, in fair to excellent yields. The 2-(trichloromethyl)pyrimidines 38 are very useful precursors of a wide variety of other 2-substituted pyrimidines 46-52.
机译:已经设计了方法以潜在,掩蔽和未保护的形式产生在4位带有离去基团的1H-1,3-二氮杂-1,3-丁二烯。这些氮杂二烯的标志是它们与缺乏电子的乙炔进行热[4π+2π]环加成反应,生成加合物,在反应条件下被芳香化为嘧啶衍生物。因此,将在溶液中加热的1-(甲氧基-羰基)-3-酰基lam17原位转化为1,3-二氮杂1,3-二烯18和/或19,它们与乙酰二羧酸二甲酯(DMAD)反应生成1-Boc-1,3-二氮杂-1,3-二烯24是1H-二烯的掩蔽形式,因为它们在相对温和的条件下与DMAD反应生成二氢嘧啶加合物25,这很容易可以通过〜1H NMR光谱检测到,并且在更高的温度下可芳构成嘧啶26。 4-甲硫基化合物31和33以及2-(三氯甲基)化合物37是可分离的,相对稳定的1H-1,3-二氮杂-1,3-丁二烯。这些容易制备的化合物在温和的条件下与缺电子的乙炔反应,分别以公平至优异的产率提供嘧啶20、34和38。 2-(三氯甲基)嘧啶38是多种其他2-取代的嘧啶46-52的非常有用的前体。

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