首页> 外文期刊>The Journal of Organic Chemistry >Domino Acylation/Diels-Alder Synthesis of N-Alkyl-octahydroisoquinolin-1-one-8-carboxylic Acids under Low-Solvent Conditions
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Domino Acylation/Diels-Alder Synthesis of N-Alkyl-octahydroisoquinolin-1-one-8-carboxylic Acids under Low-Solvent Conditions

机译:低溶剂条件下N-烷基-八氢异喹啉-1-一-8-羧酸的多米诺酰化/ Diels-Alder合成

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摘要

The development of the domino reaction between an aminoethyl-substituted diene and maleic anhydride to afford an N-substituted octahydroisoquinolin-1-one is described. A typical procedure involves the treatment of a 1-aminoethyl-substituted butadiene with maleic anhydride at 0 degrees C to room temperature for 20 min under low-solvent conditions, which affords a series of isoquinolinone carboxylic acids in moderate to excellent yields. NMR monitoring suggested that the reaction proceeded via an initial acylation step followed by an intramolecular Diels-Alder reaction. For the latter step, a significant rate difference was observed depending on whether the amino group was substituted by a phenyl or an alkyl (usually benzyl) substituent, with the former noted by NMR to be substantially slower. The Diels-Alder step was studied by density functional theory (DFT) methods, leading to the conclusion that the degree of preorganization in the starting acylated intermediate had the largest effect on the reaction barriers. In addition, the effect of electronics on the aromatic ring in N-phenyl substrates was studied computationally and experimentally. Overall, this protocol proved considerably more amenable to scale up compared to earlier methods by eliminating the requirement of microwave batch chemistry for this reaction as well as significantly reducing the quantity of solvent.
机译:描述了氨基乙基取代的二烯与马来酸酐之间的多米诺反应的发展,以提供N-取代的八氢异喹啉-1-酮。典型的步骤涉及在低溶剂条件下,在0摄氏度至室温下,用马来酸酐将1-氨基乙基取代的丁二烯与马来酸酐处理20分钟,从而以中等至极好的收率得到一系列异喹啉酮羧酸。 NMR监测表明该反应通过最初的酰化步骤进行,随后进行分子内Diels-Alder反应。对于后面的步骤,根据氨基被苯基或烷基(通常是苄基)取代基取代,观察到明显的速率差异,而NMR则表明前者要慢得多。通过密度泛函理论(DFT)方法研究了Diels-Alder步骤,得出的结论是,起始酰化中间体中的预组织程度对反应障碍的影响最大。此外,还通过计算和实验研究了电子对N-苯基底物中芳环的影响。总体而言,与先前的方法相比,该协议通过消除微波批处理化学反应的要求以及显着减少溶剂的量,证明了其更易于扩展。

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