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二价吡啶-2,6-二甲酰胺受体对阴离子和中性客体的识别。

Recognition of anions and neutral guests by dicationic pyridine-2,6-dicarboxamide receptors.

机构信息

Facultad de Química, Universidad Nacional Autónoma de México, 04510 México D.F., México.

出版信息

J Org Chem. 2010 Apr 2;75(7):2259-73. doi: 10.1021/jo100037m.

Abstract

Dicationic N-methylated at pyridyl or quinolyl moieties derivatives of three isomers of N,N'-bis(pyridyl)pyridine-2,6-dicarboxamide (o-, m-, and p-1) and of N,N'-bis(3-quinolyl)pyridine-2,6-dicarboxamide (4) strongly bind anions in MeCN (log K in the range 3.5-6.5) with pronounced selectivity for Cl(-) and also bind neutral urea and amide guests with log K in the range 1.1-2.8. Crystal structures of the triflate salts of m-1, p-1, and 4 show that amide NH and pyridinium o-CH groups are directed inside the receptor cleft with their four protons forming a circle of radius ca. 2.35 A optimal for inclusion of Cl(-). The binding of anions to these protons is evident from the crystal structure of a mixed triflate/chloride salt of p-1, calculated (DFT/B3LYP 6-31G**) structures of 1:1 complexes of all receptors with Cl(-), and results of (1)H NMR titrations. In the crystal structure of o-1 pyridinium N-Me(+) groups are directed inside the receptor cleft impeding the anion complexation, but calculations demonstrate that simple rotation of pyridinium rings in opposite directions by ca. 30 degrees creates a cavity to which the Cl(-) ion can fit forming 4 hydrogen bonds to amide NH and aliphatic CH groups of N-Me(+). The results of (1)H NMR titrations confirm this type of binding in solution. Anions quench the intense fluorescence of 4, which allows their fluorescent sensing in the muM range. A new methodology for determination of anion binding constants to strongly acidic receptors by inhibitory effects of anions on the receptor deprotonation by an external base has been developed. High affinity and selectivity of anion complexation by dicationic pyridine-2,6-dicarboxamides is attributed to the rigid preorganized structure of receptors, the high acidity of NH and CH groups, and the electrostatic charge effect.

摘要

二价 N-甲基吡啶基或喹啉基取代的三种 N,N'-双(吡啶)-2,6-二羧酸酰胺(邻、间、对-1)和 N,N'-双(3-喹啉基)-2,6-二羧酸酰胺(4)的异构体衍生物在 MeCN 中强烈结合阴离子(log K 在 3.5-6.5 范围内),对 Cl(-)具有明显的选择性,也与中性脲和酰胺客体结合,log K 在 1.1-2.8 范围内。间-1、对-1 和 4 的三氟甲磺酸盐的晶体结构表明,酰胺 NH 和吡啶翁 o-CH 基团被定向到受体裂缝内部,其四个质子形成一个约 2.35 A 的半径的圆,适合包含 Cl(-)。阴离子与这些质子的结合可从对-1 的混合三氟甲磺酸/氯化物盐的晶体结构中看出,通过 DFT/B3LYP 6-31G**计算了所有受体与 Cl(-)的 1:1 络合物的结构,以及(1)H NMR 滴定的结果。邻-1 中吡啶翁 N-Me(+)基团被定向到受体裂缝内部,阻碍了阴离子络合,但计算表明,吡啶翁环向相反方向简单旋转约 30 度,形成一个空腔,Cl(-)离子可以适应,与酰胺 NH 和 N-Me(+)的脂肪族 CH 基团形成 4 个氢键。(1)H NMR 滴定的结果证实了这种在溶液中的结合类型。阴离子猝灭了 4 的强烈荧光,使其能够在微摩尔范围内进行荧光传感。通过外部碱对受体去质子化的抑制作用,开发了一种新的方法来测定强酸性受体与阴离子结合常数。二价吡啶-2,6-二羧酸酰胺对阴离子的高亲和力和选择性归因于受体的刚性预组织结构、NH 和 CH 基团的高酸度以及静电电荷效应。

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