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共轭1,3,5,7-辛四烯8π电环化取代效应的计算研究。

A computational investigation towards substitution effects on 8π electrocyclisation of conjugated 1,3,5,7-octatetraenes.

作者信息

Arfan Nur Hazimah B Z, Hamid Malai Haniti S A, Sheikh Nadeem S

机构信息

Chemical Sciences, Faculty of Science, Universiti Brunei Darussalam Jalan Tungku Link, Gadong BE1413 Brunei Darussalam

出版信息

RSC Adv. 2023 Oct 20;13(44):30787-30797. doi: 10.1039/d3ra05127g. eCollection 2023 Oct 18.

Abstract

A computational investigation using M06-2X/6-31+G(d) method is reported for the substitution effects on 8π electrocyclisation of conjugated octatetraene. This systematic study describes the mono- and di-substitution effect across the 1,3,5,7-octatetraene skeleton. A general preference of the outward substitution over the inward, at C1 position of the monosubstituted system is observed. However, mesomerically electron donating group (-NH and -OH) display an opposite effect with respect to secondary orbital interaction (SOI) between the lone pair on the substituent and the orbital. A comparative evaluation on the computed activation energies for the 1-, 2-, 3-, and 4-monosubstituted system showed an insignificant impact on the rate of the reaction, in contrast to the electrocyclic ring closure of the unsubstituted compound. Computations of disubstituted system are more pronounced, where a remarkable acceleration is observed for 2-NO-7-NO substituted octatetraene at 4.9 kcal mol, and a noticeable deceleration for 4-CH-5-CH substituted octatetraene at 25.4 kcal mol from the parent molecule, 17.0 kcal mol. A visible accelerated effects are commonly exhibited by the substitution on the terminal double bonds (C1, C2, C7, and C8), that are 1,2-, 1,7-, 1,8-, and 2,7-patterns, in regard to the greater orbital interaction for the new σ-bond formation. Despite the unfavourable steric clashes of the substituents in the 1,8-system, an apparent reduction in the energy barrier up to 7.4 kcal mol is computed for 1-NH-8-NO system from 17.0 kcal mol. This is due to the synergistic effect of the electron donor and electron acceptor, enhancing the stability of the transition structure. The electrocyclic ring closure involving vicinal substitution patterns, such as 1,2-, 2,3-, 3,4-, and 4,5-systems are critically dominated by steric crowding between the adjacent functional groups. In certain cases of the 1,2-substituted system, a noticeable accelerated effects are found for 1-NH-2-NH-substituted compound (9.7 kcal mol) due to an increased in electronic density on the substituted terminal double bond (C1-C2), hence favouring the formation of the new σ-bond.

摘要

本文报道了一项使用M06 - 2X/6 - 31+G(d)方法对共轭八碳四烯8π电环化取代效应的计算研究。该系统研究描述了单取代和双取代对1,3,5,7 - 八碳四烯骨架的影响。在单取代体系的C1位置,观察到向外取代相对于向内取代具有普遍的偏好。然而,对于取代基上的孤对电子与轨道之间的二级轨道相互作用(SOI),中介供电子基团(-NH和-OH)表现出相反的效果。与未取代化合物的电环化闭环反应相比,对1 -、2 -、3 -和4 -单取代体系计算的活化能的比较评估显示,对反应速率的影响不显著。双取代体系的计算结果更为明显,其中2 - NO - 7 - NO取代的八碳四烯在4.9 kcal/mol时观察到显著加速,而4 - CH - 5 - CH取代的八碳四烯相对于母体分子17.0 kcal/mol在25.4 kcal/mol时出现明显减速。对于末端双键(C1、C2、C7和C8)上的取代,即1,2 -、1,7 -、1,8 -和2,7 -模式,由于新σ键形成的轨道相互作用更大,通常表现出明显的加速效应。尽管1,8 -体系中取代基存在不利空间冲突,但对于1 - NH - 8 - NO体系,计算得到的能垒从17.0 kcal/mol明显降低至7.4 kcal/mol。这是由于电子供体和电子受体的协同效应,增强了过渡结构的稳定性。涉及邻位取代模式的电环化闭环反应,如1,2 -、2,3 -、3,4 -和4,5 -体系,主要受相邻官能团之间的空间拥挤控制。在1,2 -取代体系的某些情况下,由于取代末端双键(C1 - C2)上电子密度增加,1 - NH - 2 - NH取代的化合物(9.7 kcal/mol)出现明显加速效应,因此有利于新σ键的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f18e/10587816/3fdae5cf0e6a/d3ra05127g-f1.jpg

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