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Are Electrocyclization Reactions of ((3Z)-1,3,5-Hexatrienone and Nitrogen Derivatives Pseudopericyclic? A DFT Study

机译:((3Z)-1,3,5-己三烯酮和氮衍生物伪周环的电环化反应吗?

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Electrocyclization reactions of (3Z)-1,3,5-hexatrienone and nitrogen derivatives were studied by performing density functional theory (DFT) calculations together with the 6-31+G~* basis set. Reactants, products, and transition states for each reaction were localized and the IRC connecting reactants and products was also obtained. Magnetic properties were evaluated along the reaction path to elucidate the characteristics of the reactions studied. As obtained from the calculations, electrocyclization of (3Z)-1,3,5-hexatrienone is a pericyclic process, as indicated by a variety of indexes, such as Nucleus Independent Chemical Shift (NICS), anisotropy of the magnetic susceptibility, or anisotropy of the current-induced density (ACID). This reaction presents characteristics of pericyclic reactions despite the activation energy lowering relative to the electrocyclization of (4Z)-1,2,4,6heptatetraene, and the relatively small NICS values observed in the transition state. Magnetic properties indicate that an enhancement of the aromaticity relative to reactants and products occurs revealing the absence of orbital disconnections on the cyclic loop of interacting orbitals. Only two reactions among those studied exhibit pseudopericyclic character due to the in-plane attack of the lone pair on nitrogen. In these cases, the reactions showed no barrier for the electrocyclization process, and no aromaticity enhancement was observed.
机译:通过进行密度泛函理论(DFT)计算并结合6-31 + G〜*基集,研究了(3Z)-1,3,5-己烯酮和氮衍生物的电环化反应。定位每个反应的反应物,产物和过渡态,并获得连接反应物和产物的IRC。沿反应路径评估了磁性,以阐明所研究反应的特征。从计算中得出,(3Z)-1,3,5-己烯酮的电环化是一个周环过程,如各种指数所指示,例如核独立化学位移(NICS),磁化率各向异性或各向异性电流密度(ACID)的变化。尽管相对于(4Z)-1,2,4,6庚二烯的电环化活化能降低,并且在过渡态下观察到相对较小的NICS值,但该反应仍呈现出周环反应的特征。磁性能表明,相对于反应物和产物,芳香性增强了,这表明相互作用的轨道的循环环上没有轨道断开。由于孤对对氮的面内攻击,所研究的反应中只有两个反应表现出伪周环特征。在这些情况下,反应没有显示出对电环化过程的障碍,也没有观察到芳香性增强。

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