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2-[(R-苯基)胺]-1,4-萘二酮在乙腈中取代基对其氧化还原性质影响的实验与理论研究

An Experimental and Theoretical Study of the Substituent Effects on the Redox Properties of 2-[(R-phenyl)amine]-1,4-naphthalenediones in Acetonitrile.

作者信息

Aguilar-Martínez M., Cuevas G., Jiménez-Estrada M., González I., Lotina-Hennsen B., Macías-Ruvalcaba N.

机构信息

Universidad Nacional Autónoma de México, Facultad de Química, Departamentos de Fisicoquímica y Bioquímica; Instituto de Química, 04510 México, D.F., México, and Universidad Autónoma Metropolitana-Iztapalapa, Departamento de Química, Apartado Postal 55-534, 09340 México D.F., México.

出版信息

J Org Chem. 1999 May 14;64(10):3684-3694. doi: 10.1021/jo990186o.

Abstract

We synthesized and analyzed 19 compounds of 3'- (meta-) and 4'- (para-) substituted 2-[(R-phenyl)amine]-1,4-naphthalenediones (PANs) R = p-MeO, p-Me, p-Bu, p-Hex, p-Et, m-Me, m-Et, H, p-Cl, p-Br, m-F, m-Cl, p-COCH(3), m-CN, m-NO(2), m-COOH, and p-COOH. Despite the fact that the nitrogen atom, which binds the quinone with the meta- and para-substituted ring, interferes with the direct conjugation between both rings, the UV-vis spectra of these compounds show the existence of an intramolecular electronic transfer from the respective aniline to the p-naphthoquinone moiety. In accordance with this donor-acceptor character, the cyclic voltammograms of these compounds exhibit two, one-electron reduction waves corresponding to the formation of radical-anion and dianion, where the half-wave potential values vary linearly with the Hammett constants (sigma(x)). The analysis of the different voltammetric parameters (e.g., voltammetric function, anodic/cathodic peak currents ratio, and the separation between the anodic and cathodic potential peaks) show that with the exception of the carboxylic PAN derivatives, all compounds present the same reduction pathway. We investigated the molecular and electronic structures of these compounds using the semiempirical PM3 method and, within the framework of the Density Functional Theory, using the Becke 3LYP hybrid functional with a double zeta split valence basis set. Our theoretical calculations predict that, with the exception of the p-nitro compound, all the compounds are planar molecules where the conjugation degree of the nitrogen lone pair with the quinone system depends on the position and magnitude of the electronic effect of the substituent in the aniline ring. The Laplacians of the critical points (nabla(2)rho), for the C-O bonds, show that the first reduction wave corresponds to the carbonyl group in alpha-position to the aniline, and that the second one-electron transfer is due to the C(4)-O(2) carbonyl reduction. Thus, the higher reaction constant value (rho) obtained for the second one-electron transfer is due to the fact that the displacement of the nonshared electrons of the amino nitrogen merely modifies the electron density of C(4)-O(2) bond. The positive correlation between the LUMO energy values calculated for these compounds and the E(1/2) potentials corresponding to the C(1)-O(1) carbonyl reduction show that the electron addition takes place at the lowest unoccupied molecular orbital, supporting the fact that this wave is also prone to the substituent effect.

摘要

我们合成并分析了19种3'-(间位)和4'-(对位)取代的2-[(R-苯基)胺]-1,4-萘二酮(PANs)化合物,其中R = 对甲氧基、对甲基、对丁基、对己基、对乙基、间甲基、间乙基、氢、对氯、对溴、间氟、间氯、对乙酰基、间氰基、间硝基、间羧基和对羧基。尽管连接醌与间位和对位取代环的氮原子干扰了两个环之间的直接共轭,但这些化合物的紫外可见光谱显示存在从相应苯胺到对萘醌部分的分子内电子转移。根据这种供体-受体特性,这些化合物的循环伏安图呈现出两个单电子还原波,分别对应于自由基阴离子和二价阴离子的形成,其中半波电位值与哈米特常数(σ(x))呈线性变化。对不同伏安参数(如伏安函数、阳极/阴极峰值电流比以及阳极和阴极电位峰之间的间距)的分析表明,除了羧酸PAN衍生物外,所有化合物都呈现相同的还原途径。我们使用半经验PM3方法以及在密度泛函理论框架内,采用具有双ζ分裂价基组的Becke 3LYP杂化泛函研究了这些化合物的分子和电子结构。我们的理论计算预测,除了对硝基化合物外,所有化合物都是平面分子,其中氮孤对与醌体系的共轭程度取决于苯胺环上取代基电子效应的位置和大小。对于C-O键的临界点拉普拉斯算子(▽²ρ)表明,第一个还原波对应于苯胺α位的羰基,而第二个单电子转移是由于C(4)-O(2)羰基的还原。因此,第二个单电子转移获得的较高反应常数(ρ)值是由于氨基氮的非共享电子的位移仅改变了C(4)-O(2)键的电子密度。这些化合物计算得到的最低未占分子轨道(LUMO)能量值与对应于C(1)-O(1)羰基还原的E(1/2)电位之间的正相关表明,电子加成发生在最低未占分子轨道上,支持了这一波也容易受到取代基效应影响的事实。

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