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1-(芳基偶氮)-2-萘酚中N-H...O/N...H-O互变异构竞争的变温X射线晶体学和密度泛函理论计算研究。过渡态氢键理论概述。

Variable-temperature X-ray crystallographic and DFT computational study of the N-H...O/N...H-O tautomeric competition in 1-(Arylazo)-2-naphthols. Outline of a transition-state hydrogen-bond theory.

作者信息

Gilli Paola, Bertolasi Valerio, Pretto Loretta, Antonov Liudmil, Gilli Gastone

机构信息

Centro di Strutturistica Diffrattometrica and Dipartimento di Chimica, Università di Ferrara, I-44100 Ferrara, Italy.

出版信息

J Am Chem Soc. 2005 Apr 6;127(13):4943-53. doi: 10.1021/ja0453984.

Abstract

Phenyl-substituted 1-arylazo-2-naphthols (AAN) display ...HN-N=C-C=O... <==>...N=N-C=C-OH... ketohydrazone-azoenol tautomerism and can form intramolecular resonance-assisted H-bonds from pure N-H...O to pure N...H-O through tautomeric and dynamically disordered N-H...O <==>N...H-O bonds according to the electronic properties of their substituents. Three compounds of this series (m-OCH(3)-AAN = mOM; p-Cl-AAN = pCl; and p-NMe(2)-AAN = pNM2) have been studied by X-ray crystallography at four temperatures (100-295 K), showing that the remarkably short H-bonds formed (2.53 < or = d(N...O) < or = 2.55 A) are a pure N-H...O in mOM, a dynamically disordered mixture in pCl (N-H...O:N...H-O = 69:31 at 100 K), and a statically disordered mixture in pNM2 (N-H...O:N...H-O = 21:79 at 100 K). These compounds, integrated by the p-H-, p-NO(2)-, p-F-, and p-O(-)-substituted derivatives, have been emulated by DFT methods (B3LYP/6-31+G(d,p) level) with full geometry optimization of the stationary points along the proton-transfer (PT) pathway: N-H...O and N...H-O ground states and N...H...O transition state. Analysis of DFT-calculated energies and geometries by the methods of the rate-equilibrium Marcus theory shows that all H-bond features (stability and tautomerism, as well as position and height of the PT barrier) can be coherently interpreted in the frame of the transition-state (or activated-complex) theory by considering the bond as a chemical reaction N-H...O <==> N...H...O <==> N...H-O which is bimolecular in both directions and proceeds via the N...H...O PT transition state (the activated complex).

摘要

苯基取代的1-芳基偶氮-2-萘酚(AAN)呈现出……HN-N=C-C=O……⇌……N=N-C=C-OH……酮腙-偶氮烯醇互变异构现象,并且根据其取代基的电子性质,可通过互变异构和动态无序的N-H……O⇌N……H-O键形成从纯N-H……O到纯N……H-O的分子内共振辅助氢键。该系列的三种化合物(间甲氧基-AAN = mOM;对氯-AAN = pCl;对二甲氨基-AAN = pNM2)已在四个温度(100 - 295 K)下通过X射线晶体学进行了研究,结果表明所形成的显著短的氢键(2.53 ≤ d(N……O) ≤ 2.55 Å)在mOM中是纯N-H……O,在pCl中是动态无序混合物(在100 K时N-H……O:N……H-O = 69:31),在pNM2中是静态无序混合物(在100 K时N-H……O:N……H-O = 21:79)。这些化合物,包括对氢、对硝基、对氟和对氧负离子取代的衍生物,已通过DFT方法(B3LYP/6 - 31 + G(d,p)水平)进行模拟,对沿质子转移(PT)途径的驻点进行了完全几何优化:N-H……O和N……H-O基态以及N……H……O过渡态。通过速率平衡马库斯理论方法对DFT计算的能量和几何结构进行分析表明,通过将该键视为化学反应N-H……O⇌N……H……O⇌N……H-O,在过渡态(或活化络合物)理论框架内可以连贯地解释所有氢键特征(稳定性和互变异构现象,以及PT势垒的位置和高度),该化学反应在两个方向上都是双分子的,并通过N……H……O PT过渡态(活化络合物)进行。

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