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Structural and Conformational Studies of ortho-, meta-, and para-Methyl Red upon Proton Gain and Loss

机译:质子得失时的邻位-,元-和对位-甲基红的结构和构象研究

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The structures and conformations of ortho-, meta-, and para-methyl red (MR) upon proton gain and loss were studied by density functional calculations, and compared to methyl yellow for the effects of a carboxyl substitution. Internal hydrogen bonding causes the geometry of neutral o-MR planar, otherwise twist. Monoprotonated species of MR are planar where the proton is attached to モ-azo nitrogen. This loses its azo character a bit, and shows strong delocalization characterized as a quinonoid canonical structure. Di-protonated species of MR is proved to hold two protons at the amino and メ-azo nitrogen atoms, and planar. It regains somewhat of its azo character, but still shows fairly delocalized property in terms of carbocationic canonical structures. The carboxyl substitution on 4-dimethylamino-trans-azobenzene structure has some delocalization effects on the geometry or conformation of MR derivatives whether neutral, mono-, di- or de-protonated.
机译:利用密度泛函研究了质子得失时的邻位甲基,间位甲基和对位甲基红的结构和构象。计算,并与甲基黄的羧基取代效果进行比较。内部氢键导致中性o-MR平面的几何形状,否则扭曲。 MR的单质子化物质是平面的,其中质子连接至mo-偶氮。这稍微失去了其偶氮特性,并表现出强烈的离域化,其特征在于为醌型规范结构。 MR的双质子化物质被证明在氨基和メ-偶氮氮原子上具有两个质子,并且是平面的。它在某种程度上恢复了其偶氮特性,但在碳正离子规范结构方面仍显示出相当离域的性质。 4-二甲氨基-反式-偶氮苯结构上的羧基取代对MR衍生物的几何或构象有一定的离域作用,无论是中性,单质,二质或去质子化。

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