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一项基于电子定位函数以及变色龙模型和半人马模型的突变理论,针对1,5 - 己二烯及其氰基衍生物的科普重排的联合研究。

A joint study based on the electron localization function and catastrophe theory of the chameleonic and centauric models for the Cope rearrangement of 1,5-hexadiene and its cyano derivatives.

作者信息

Polo Victor, Andrés Juan

机构信息

Departament de Ciències Experimentals, Universitat Jaume I, Castelló, Spain.

出版信息

J Comput Chem. 2005 Nov 15;26(14):1427-37. doi: 10.1002/jcc.20272.

Abstract

A novel interpretation of the chameleonic and centauric models for the Cope rearrangements of 1,5-hexadiene (A) and different cyano derivatives (B: 2,5-dicyano, C: 1,3,4,6-tetracyano, and D: 1,3,5-tricyano) is presented by using the topological analysis of the electron localization function (ELF) and Thom's catastrophe theory (CT) on the reaction paths calculated at the B3LYP/6-31G(d,p) level. The progress of the reaction is monitorized by the changes of the ELF structural stability domains (SSD), each being change controlled by a turning point derived from CT. The reaction mechanism of the parent reaction A is characterized by nine ELF SSDs. All processes occur in the vicinity of the transition structure and corresponding to a concerted formation/breaking of C(1)-C(6) and C(3)-C(4) bonds, respectively, together with an accumulation of charge density onto C(2) and C(5) atoms. Reaction B presents the same number of ELF SSDs as A, but a different order appears; the presence of 2,5-dicyano substituents favors the formation of C(1)-C(6) bonds over the breaking of C(3)-C(4) bond process, changing the reaction mechanism from a concerted towards a stepwise, via a cyclohexane biradical intermediate. On the other side, reaction C presents the same type of turning points but two ELF SSD less than A or B; there is an enhancement of the C(3)-C(4) bond breaking process at an earlier stage of the reaction by delocalizing the electrons from the C(3)-C(4) bond among the cyano groups. In the case of competitive effects of cyano subsituents on each moiety, as it is for reaction D, seven different ELF SSDs have been identified separated by eight turning points (two of them occur simultaneously). Both processes, formation/breaking of C(1)-C(6) and C(3)-C(4) bonds, are slightly favored with respect to the parent reaction (A), and the TS presents mixed electronic features of both B and C. The employed methodology provides theoretical support for the centauric nature (half-allyl, half-radical) for the TS of D.

摘要

通过在B3LYP/6 - 31G(d,p)水平计算的反应路径上使用电子定位函数(ELF)的拓扑分析和托姆突变理论(CT),对1,5 - 己二烯(A)和不同氰基衍生物(B:2,5 - 二氰基,C:1,3,4,6 - 四氰基,D:1,3,5 - 三氰基)的科普重排的变色龙模型和半人马模型提出了一种新颖的解释。反应进程通过ELF结构稳定性域(SSD)的变化进行监测,每个变化由CT导出的转折点控制。母体反应A的反应机理由九个ELF SSD表征。所有过程都发生在过渡结构附近,分别对应于C(1)-C(6)和C(3)-C(4)键的协同形成/断裂,同时电荷密度在C(2)和C(5)原子上积累。反应B呈现与A相同数量的ELF SSD,但出现了不同的顺序;2,5 - 二氰基取代基的存在有利于C(1)-C(6)键的形成,而不是C(3)-C(4)键的断裂过程,通过环己烷双自由基中间体使反应机理从协同转变为逐步。另一方面,反应C呈现相同类型的转折点,但比A或B少两个ELF SSD;通过将C(3)-C(4)键中的电子离域到氰基之间,在反应的早期阶段增强了C(3)-C(4)键的断裂过程。在氰基取代基对每个部分的竞争效应的情况下,如反应D,已识别出七个不同的ELF SSD,由八个转折点分隔(其中两个同时出现)。C(1)-C(6)和C(3)-C(4)键的形成/断裂这两个过程相对于母体反应(A)都略有优势,并且过渡态呈现出B和C两者的混合电子特征。所采用的方法为D的过渡态的半人马性质(半烯丙基,半自由基)提供了理论支持。

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