首页> 外文期刊>The Journal of Organic Chemistry >Reactivity of Cross-Conjugated Enynones in Cyclocondensations with Hydrazines: Synthesis of Pyrazoles and Pyrazolines
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Reactivity of Cross-Conjugated Enynones in Cyclocondensations with Hydrazines: Synthesis of Pyrazoles and Pyrazolines

机译:肼交叉共轭兴奋剂在肼环干中的反应性:吡唑和吡唑啉的合成

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摘要

The cyclocondensation of cross-conjugated enynones, dienynones, and trienynones (easily available due to low-cost starting compounds) with arylhydrazines leads to the regioselective synthesis of pyrazole derivatives (dihetaryl-substituted ethens, buta-1,3-diens, and hexa-1,3,5-triens) or results in 4,5-dihydro-1H-pyrazoles in good yield. The reaction path is controlled by the character of the substituent in enynone: the pyrazoles are obtained from the reaction of substrates that contain five-membered heteroaromatic substituents with arylhydrazines, and the 4,5-dihydro-1H-pyrazoles are obtained from the reaction of 1,5-diphenylpent-1-en-4-yn-3-one with arylhydrazines consistently. Despite the presence of a substituent, cyclocondensation of 2-hydrazinylpyridine with all of examined cross-conjugated enynones leads to the formation of pyrazoles. The reaction does not require special conditions (temperature, catalyst, inert atmosphere). The cyclocondensation pathways are determined by the electronic effect of an electron-rich five-membered heteroaromatic ring in the substrate. The synthesis allows use of various substituents and functional groups in enynone and hydrazine. The present method features high yields and simplicity of the product purification. The obtained pyrazoles possess fluorescent properties with a quantum yield up to 31%.
机译:交叉共轭烯炔酮、二烯基酮和三炔酮(由于起始化合物成本低,容易获得)与芳基肼的环缩合导致吡唑衍生物(二芳基取代乙烯、丁烷-1,3-二烯和六-1,3,5-三烯)的区域选择性合成,或以良好的产率得到4,5-二氢-1H-吡唑。反应路径由烯炔酮中取代基的性质控制:吡唑是由含有五元杂芳基取代基的底物与芳基肼反应得到的,4,5-二氢-1H-吡唑是由1,5-二苯基戊-1-烯-4-烯-3-酮与芳基肼反应得到的。尽管存在取代基,2-肼基吡啶与所有检查的交叉共轭烯炔酮的环缩合导致吡唑的形成。反应不需要特殊条件(温度、催化剂、惰性气氛)。环缩合途径由底物中富含电子的五元杂环的电子效应决定。该合成允许使用烯炔酮和肼中的各种取代基和官能团。本方法具有产率高、产品纯化简单的特点。所得吡唑具有荧光性质,量子产率高达31%。

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