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首页> 外文期刊>The Journal of Chemical Physics >Substituent effects on the aromaticity of benzeneAn approach based on interaction coordinates
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Substituent effects on the aromaticity of benzeneAn approach based on interaction coordinates

机译:基于互动坐标的苯乙烯方法芳香性的取代基

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Benzene and 23 monosubstituted and 32 disubstituted derivatives of benzene were optimized for minimum energy structures using the B3LYP/cc-pVTZ method. The force fields of all the compounds were evaluated at their optimized geometries using the same method and basis set. In order to understand the effect of substitution(s) on the aromaticity of benzene, the aromaticity index based on interaction coordinates (AIBIC) values were computed for each and the change from the benzene value was obtained. This difference, the substituent effect based on interaction coordinates (SEBIC), quantifies the effect of the substituent on the aromaticity of benzene ring satisfactorily. It is found that the AIBIC of disubstituted benzenes (XC6H4Y) could be predicted well by adding the respective SEBIC(C6H5X) and SEBIC(C6H5Y) values to the AIBIC of benzene. The projected force fields of the meta and para fragments of the monosubstituted benzenes when chosen properly contain the information about the directing influence of the substituent in terms of the electron density based on interaction coordinates (EDBIC). When the EDBIC(para) > EDBIC(meta) relative to benzene, the substituent is ortho-para directing, while when the reverse is true, it is meta directing. The effect of conformational changes on aromaticity has been studied using aminophenols and dihydroxybenzenes. The additivity rule and the EDBIC concept work adequately well in that the methods can have several useful practical applications that will benefit various areas of science. A good understanding of the substituent effects and the ability to predict them should add a new dimension to the applications of AIBIC.
机译:使用B3LYP / CC-PVTZ法针对最小能量结构进行优化苯和23个单位制态和32个二磺酸衍生物。使用相同的方法和基础设置在其优化的几何形状中评估所有化合物的力场。为了理解取代对苯的芳香性的影响,基于相互作用坐标(异常)值的芳香性指数被计算为每个,并获得来自苯值的变化。这种差异,基于相互作用坐标(SEBIC)的取代基效应量量化了取代基对苯环芳香性的影响令人满意。发现通过将相应的SEBIC(C6H5X)和SEBIC(C6H5Y)值加入到苯的AIBIC中,可以易于预测二化苯(XC6H4Y)的混浊。选择适当含有关于取代基的引导影响基于相互作用的坐标(EDBIC)的电子密度方面的信息时,单取代的苯的间位和对碎片的投影力场。当edbic(段)> edbic(meta)相对于苯时,取代基是ortho-para指挥,而当反向是真的时,它是元指挥。研究了使用氨基苯酚和二羟基苯对芳香性对芳香性的影响。添加性规则和edbic概念充分发挥作用,因为这些方法可以有几种有用的实际应用,这些应用程序将受益各种科学领域。良好地了解取代基效应和预测它们的能力应该为AIBIC应用增加新的维度。

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