Department of Chemistry, College of Sciences, Shiraz University, Shiraz, Iran.
J Phys Chem A. 2011 Nov 17;115(45):12688-94. doi: 10.1021/jp2036179. Epub 2011 Sep 7.
Optimization of monosubstituted (X = NO, NO(2), CN, CHO, Me, OMe, OH, NH(2), NHMe, and N(Me)(2)) derivatives of 1,2- and 2,3-naphthoquinone by use of B3LYP with the 6-311+G** basis set applying the GAUSSIAN03 program allowed us to analyze the character of interactions between the substituents and the carbonyl groups. It is shown that only one of two carbonyl groups exhibited substantial substituent effect evidenced by regression of the CO bond length and delocalization index, DI(CO) on the Hammett substituent constants, σ(p), with a very high correlation coefficient, whereas the other one did not depend in any substantial way on σ(p). Dependences of conjugation path built up of bonds between substituent and oxygen atoms of carbonyl groups on σ(p), give more acceptable correlations if the number of bonds in the path is even than in cases when they are odd.
通过使用 B3LYP 与 6-311+G**基组并应用 GAUSSIAN03 程序,对 1,2-和 2,3-萘醌的单取代(X = NO、NO(2)、CN、CHO、Me、OMe、OH、NH(2)、NHMe 和 N(Me)(2))衍生物进行了优化,从而可以分析取代基与羰基之间相互作用的特征。结果表明,只有两个羰基中的一个表现出显著的取代基效应,这可以通过 CO 键长和离域指数 DI(CO)与哈米特取代基常数 σ(p)的回归来证明,其相关性非常高,而另一个羰基则没有受到 σ(p)的实质性影响。如果共轭路径中原子之间的键数为偶数,那么取代基与羰基氧原子之间的共轭路径的依赖性与 σ(p)的相关性更好,而如果键数为奇数,则相关性较差。