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Efficient synthesis of pyrano[3,2-c]pyridines via a green and catalyst-free method at ambient temperature, and related DFT calculations

机译:在环境温度下通过绿色且无催化剂的方法高效合成吡喃并[3,2-c]吡啶及相关的DFT计算

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摘要

Twelve medicinally important pyrano[3,2-c]pyr-idine derivatives were precipitated, with high yields, from ethanol solutions of malononitrile and (E)-3,5-bis(benzyli-dene)-4-piperidones at ambient temperature, requiring almost no work-up. Natural bond order calculations at the B3LYP/6-31+G~* level indicate that electron-withdrawing groups on the phenyl rings deplete electron density on β-atoms (with respect to the carbonyl. groups) of the piperidones, leading to higher yields of the corresponding products with shorter reaction times. This green methodology appears in a clear contrast to all previous reports, where either a catalyst and/or microwave was employed. So, simplicity and short reaction time, non-toxicity of the solvent, as well as economic feasibility are major advantages of this chemically waste-free process.
机译:在环境温度下,从丙二腈和(E)-3,5-双(苄基-二烯)-4-哌啶酮的乙醇溶液中高收率析出十二种具有医学重要性的吡喃并[3,2-c]吡啶-吡啶衍生物,几乎不需要任何后处理。在B3LYP / 6-31 + G〜*能级上的自然键序计算表明,苯环上的吸电子基团耗尽了哌啶酮的β原子上的电子密度(相对于羰基),从而提高了产率。反应时间较短的相应产物。这种绿色方法与所有以前使用催化剂和/或微波的报告形成鲜明对比。因此,简单,反应时间短,溶剂无毒以及经济可行性是这种无化学废物工艺的主要优点。

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