首页> 外文期刊>Organic & biomolecular chemistry >Regioselective construction of 1,3-diazaheterocycle fused [1,2-a][1,8]naphthyridine derivatives via cascade reaction of quinolines with heterocyclic ketene aminals: a joint experimental-computational approach
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Regioselective construction of 1,3-diazaheterocycle fused [1,2-a][1,8]naphthyridine derivatives via cascade reaction of quinolines with heterocyclic ketene aminals: a joint experimental-computational approach

机译:通过喹啉与杂环烯酮缩醛的级联反应,选择性合成1,3-二氮杂杂环稠合的[1,2-a] [1,8]萘啶衍生物:一种联合实验-计算方法

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摘要

A one-step, transition-metal-free protocol, involving facile post-treatment, for the regioselective synthesis of 1,3-diazaheterocycle fused [1,2-a][1,8]naphthyridine derivatives from 2-chloroquinoline-3-carbalde-hydes (CIQuAlds) and heterocyclic ketene aminals (HKAs) was developed via a joint experimental-computational approach. The computational prediction of the reactivity of two series of synthons was applied in the process of optimizing the reaction conditions, which relied on density functional theory (DFT) calculations together with concepts of frontier molecular orbital (FMO) theory and quantitative structure-reactivity relationship (QSRR) presumptions. The combined results enabled the proposal of a pre-synthetic prediction of global reactivity. The fully consistent results of the synthetic experiments with the in silico evaluation confirmed the rationality, effectiveness, and practicability of the new strategy. Notably, the joint method is not limited to the laboratory, but has applications ranging from routine to industry. This approach is likely to yield numerous insights to accelerate HKA-related synthetic chemistry that can be extended to numerous heterocycles. It thus opens up a novel entry towards rapidly investigating the reactivity of novel synthons with unique properties, a further step towards exploiting cascade reactions by avoiding the futile waste of time and resources.
机译:一步一步的无过渡金属方案,涉及简便的后处理,用于由2-氯喹啉-3-选择性合成1,3-二氮杂杂环稠合的[1,2-a] [1,8]萘啶衍生物。通过联合实验-计算方法开发了碳氢化物(CIQuAlds)和杂环烯酮缩醛(HKA)。在优化反应条件的过程中,采用了两个系列合成子的反应性的计算预测,该预测依赖于密度泛函理论(DFT)的计算以及前沿分子轨道(FMO)理论的概念和定量结构-反应性关系( QSRR)的推定。合并的结果使得能够对全球反应性进行合成前预测。通过计算机评估得出的综合实验结果完全一致,证实了该新策略的合理性,有效性和实用性。值得注意的是,联合方法不仅限于实验室,其应用范围从常规到工业。这种方法可能会产生许多见识,以加快与HKA相关的合成化学的发展,这些化学反应可以扩展到许多杂环。因此,它为快速研究具有独特性质的新型合成子的反应性开辟了一条新的途径,这是通过避免浪费时间和资源而进一步利用级联反应的进一步步骤。

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  • 来源
    《Organic & biomolecular chemistry》 |2013年第42期|7276-7288|共13页
  • 作者单位

    Key Laboratory of Medicinal Chemistry for Natural Resource (Yunnan University), Ministry of Education, School of Chemical Science and Technology, Yunnan University, Kunming, 650091, P. R. China;

    Key Laboratory of Medicinal Chemistry for Natural Resource (Yunnan University), Ministry of Education, School of Chemical Science and Technology, Yunnan University, Kunming, 650091, P. R. China,Department of Applied Chemistry, Faculty of Science, Kunming University of Science and Technology, Kunming, 650500, P. R. China;

    Key Laboratory of Medicinal Chemistry for Natural Resource (Yunnan University), Ministry of Education, School of Chemical Science and Technology, Yunnan University, Kunming, 650091, P. R. China,Department of Applied Chemistry, Faculty of Science, Kunming University of Science and Technology, Kunming, 650500, P. R. China;

    Department of Applied Chemistry, Faculty of Science, Kunming University of Science and Technology, Kunming, 650500, P. R. China;

    Key Laboratory of Medicinal Chemistry for Natural Resource (Yunnan University), Ministry of Education, School of Chemical Science and Technology, Yunnan University, Kunming, 650091, P. R. China;

    Key Laboratory of Medicinal Chemistry for Natural Resource (Yunnan University), Ministry of Education, School of Chemical Science and Technology, Yunnan University, Kunming, 650091, P. R. China;

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