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Experimental and computational study on the reactivity of 23-bis(3-pyridylmethyl)amino-2(Z)-butene-14-dinitrile a key intermediate for the synthesis of tribenzoporphyrazine bearing peripheral methyl(3-pyridylmethyl)amino substituents

机译:23-双(3-吡啶基甲基)氨基 -2(Z)-丁烯-14-二腈反应性的实验和计算研究该中间体是合成带有外围甲基(3-吡啶基甲基)的三苯并卟啉的关键中间体)氨基取代基

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摘要

AbstractAn earlier developed alkylating path leading to tetraalkylated diaminomaleonitrile derivatives was explored. Attempts to explain the reactivity of the representative dialkylated diaminomaleonitrile 2,3-bis[(3-pyridylmethyl)amino]-2(Z)-butene-1,4-dinitrile during the alkylation reaction were performed using X-ray and density functional theory (DFT) studies. The condensed Fukui functions accompanied by softness indices were found to be useful in explaining its reactivity observed during the reaction. The values of the Fukui functions and condensed softness for electrophilic attack calculated from Mulliken, Löwdin, and natural population analyses closely corresponded to the experimental observations. When 2,3-bis[(3-pyridylmethyl)amino]-2(Z)-butene-1,4-dinitrile disodium salt was treated with dimethyl sulfate at lower temperatures the alkylation reaction prevailed, whereas at higher temperatures the alkylating agent acted as a hydride anion acceptor, which favored the elimination reaction. The tetraalkylated dinitrile 2,3-bis[methyl(3-pyridylmethyl)amino]-2(Z)-butene-1,4-dinitrile was used in the synthesis of tribenzoporphyrazine bearing methyl(3-pyridylmethyl)amino groups, which was subsequently subjected to solvatochromic and metallation studies. The changes observed during metallation seem to result from the coordination of the 3-pyridyl group by a palladium ion. This could influence the configuration of the methyl(3-pyridylmethyl)amino moiety, causing more effective donation of a lone pair of electrons from peripheral nitrogen to the macrocyclic ring.
机译:摘要探索了导致四烷基化二氨基马来腈衍生物的较早发展的烷基化途径。用X射线和密度泛函理论试图解释代表性的二烷基化二氨基马来腈2,3-双[(3-吡啶基甲基)氨基] -2(Z)-丁烯-1,4-二腈的反应性(DFT)研究。发现伴随着柔软指数的缩合的Fukui功能可用于解释在反应过程中观察到的反应性。从穆里肯,洛文丁和自然种群分析计算出的福井函数值和亲电攻击的凝聚软度值与实验观察值非常接近。当在较低温度下用硫酸二甲酯处理2,3-双[(3-吡啶基甲基)氨基] -2(Z)-丁烯-1,4-二腈二钠盐时,烷基化反应占优势,而在较高温度下,烷基化剂起作用作为氢化物阴离子受体,有利于消除反应。四烷基化的二腈2,3-双[甲基(3-吡啶基甲基)氨基] -2(Z)-丁烯-1,4-二腈用于合成带有甲基(3-吡啶基甲基)氨基的三苯并卟啉进行了溶剂变色和金属化研究。金属化过程中观察到的变化似乎是由于钯离子对3-吡啶基的配位作用。这可能会影响甲基(3-吡啶基甲基)氨基部分的构型,从而导致更有效地将孤对电子从周围的氮提供给大环。

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