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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Reactivity patterns of imidazole, oxazole, and thiazole as reflected by the polarization justified Fukui functions
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Reactivity patterns of imidazole, oxazole, and thiazole as reflected by the polarization justified Fukui functions

机译:极化证明的Fukui函数反映的咪唑,恶唑和噻唑的反应模式

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摘要

The concept of the polarization justified Fukui functions has been tested for the set of model molecules: imidazole, oxazole, and thiazole. Calculations of the Fukui functions have been based on the molecular polarizability analysis, which makes them a potentially more sensitive analytical tool as compared to the classical density functional theory proposals, typically built on electron density only. Three selected molecules show distinct differences in their reactivity patterns, despite very close geometry and electronic structure. The maps of the polarization justified Fukui functions on the molecular plane correctly identify important features of the molecules: the site for the preferential electrophilic attack in imidazole (-NH, see the TOC image) and oxazole (5-C), as well as uniquely aromatic character of the thiazole molecule and the acidic forms XH+ of all three species.
机译:极化证明的Fukui函数的概念已针对一组模型分子进行了测试:咪唑,恶唑和噻唑。 Fukui函数的计算是基于分子极化率分析,与典型的仅基于电子密度的经典密度泛函理论建议相比,这使它们成为了一种更敏感的分析工具。尽管几何和电子结构非常接近,但三个选定的分子在其反应模式上显示出明显的差异。在分子平面上的极化合理的Fukui函数图正确地识别了分子的重要特征:咪唑(-NH,请参见TOC图像)和恶唑(5-C)的优先亲电攻击位点,以及独特的噻唑分子的芳香特性和所有三种物质的酸性形式XH +。

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