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The effect of C-substituents on the topomerization mechanism, inversion barriers and electronic character of C=N bond in N-alkylimines: A theoretical study

机译:C-取代基对N-烷基亚胺的拓扑异构化机理,反转势垒和C = N键电子特性的影响:理论研究

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The mechanism of the degenerated Z,E-isomerization (topomerization) and the electronic structure of the imines R2C=NR' (R = NMe2, CF3, CO2Me, SMe, Me, OMe, F, CN, COMe; R' = Me, i-Pr, t-Bu) have been investigated with the DFT method (B3LYP/6-31+G(d,p)) in terms of NBO. It has been established that the topomerization of N-alkylimines passes through the inversion mechanism independently of C-substituent type (with the minor contribution of rotational component in individual cases). By means of the correlation analysis it was shown that interactions of the lone pair of the nitrogen atom with orbitals of C-substituents (nN -> sigma*(C-R) and nN <-> sigma(C-R)) have the main influence on the value of the inversion barrier (Delta E-i(not equal)) in the ground state. The increase of the energies of nN -> sigma*(C-R) interactions or the difference between energies of nN -> sigma*(C-R) and nN <-> sigma(C-R) interactions leads to reduction of the Delta E-i(not equal) value, shortening of the C=N bond, and promotes the inversion mechanism of the topomerization. The charge on the nitrogen atom mainly depends on conjugation effect of C-substituents, whereas the charge on the imino-carbon atom depends on their electronegativity (inductive effect). The increase of electronegativity of groups of the 2nd period elements at the imino-carbon atom leads to the raise of the positive charge on the imino-carbon atom whereas the increase of electronegativity of carbon-containing groups leads to the decrease of the positive charge. At the same time, the positive charges on the imino-carbon atoms for the imines with the mentioned C-substituents correlate with the values of chi-, sigma(i)-, sigma(R)-, sigma(P)-constants according to various linear dependences. These dependences differ in the sign and in the value of slope. (C) 2015 Elsevier B.V. All rights reserved.
机译:亚胺的简并Z,E异构化(拓扑异构化)机理和电子结构R2C = NR'(R = NMe2,CF3,CO2Me,SMe,Me,OMe,F,CN,COMe; R'= Me, i-Pr,t-Bu)已通过DFT方法(B3LYP / 6-31 + G(d,p))进行了NBO研究。已经确定,N-烷基亚胺的拓扑异构化通过转化机理而与C-取代基类型无关(在个别情况下,旋转组分的贡献很小)。通过相关分析表明,氮原子的孤对与C取代基的轨道(nN-> sigma *(CR)和nN <-> sigma(CR))之间的相互作用具有重要影响。基态下反演势垒的值(Delta Ei(不相等))。 nN-> sigma *(CR)相互作用的能量的增加或nN-> sigma *(CR)和nN <-> sigma(CR)相互作用的能量之差导致Delta Ei减小(不相等)值,C = N键的缩短,并促进拓扑化的反转机理。氮原子上的电荷主要取决于C取代基的共轭效应,而亚氨基碳原子上的电荷取决于其电负性(感应效应)。第二周期元素在亚氨基碳原子上的电负性的增加导致亚氨基碳原子上正电荷的增加,而含碳基团的电负性的增加导致正电荷的减少。同时,具有上述C-取代基的亚胺在亚氨基碳原子上的正电荷与根据以下定义的chi-,sigma(i)-,sigma(R)-,sigma(P)常数的值相关各种线性相关性。这些依赖关系的符号和斜率值不同。 (C)2015 Elsevier B.V.保留所有权利。

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