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肉桂基苯胺衍生物中环碳原子上取代基效应对 ¹³C NMR 位移的交替影响。

The alternating of substituent effect on the ¹³C NMR shifts of all bridge carbons in cinnamyl aniline derivatives.

机构信息

School of Chemistry and Chemical Engineering, Hunan University of Science and Technology, Key Laboratory of Theoretical, Chemistry and Molecular Simulation of Ministry of Education, Hunan Provincial University Key Laboratory of QSAR/QSPR, Xiangtan 411201, China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2012 Dec;99:218-22. doi: 10.1016/j.saa.2012.09.028. Epub 2012 Sep 25.

Abstract

Bridge carbon (13)C NMR shifts of a wide set of substituted cinnamyl anilines p-XC(6)H(4)CHCHCHNC(6)H(4)Y-p (XNO(2), Cl, H, Me, MeO, or NMe(2); YNO(2), CN, CO(2)Et, Cl, F, H, Me, MeO or NMe(2)) had been used as a probe to study the change of substituent effect in the conjugated system. The goal of this work was to study the difference among the substituent effect on SCS of all bridge carbons, and find the alternating of substituent effect in this model compounds. In this study, it was found that the change of the inductive effect and the conjugative effect on different bridge carbons is related to the bond number (m) from the substituent to the corresponding carbon, and the adjusted parameters σ(F(rel))(∗) and σ(R(ver))(∗) can be suitable to scale the difference of the inductive effect and the conjugative effect on bridge carbons. Moreover, because of the difference of substituent effect on bridge carbons, the substituent cross-interaction item Δσ(2)(Δσ(2) = (σ(F(rel))(∗)(X) + σ(R(ver))(∗)(X) - σ(F(rel))(∗)(Y) - σ(R(ver))(∗)(Y))(2)) was not suitable simply to scale the interaction between substituents X and Y for all bridge carbons, so the Δσ(2) was recommended to be divided into two parts: Δσ(F(rel))(2) (Δσ(F(rel))(2) = σ(F(rel))(∗)(X) - σ(F(rel))(∗)(Y))(2)) and Δσ(R(ver))(2) (Δσ(R(ver))(2) = (σ(R(ver))(∗)(X) - σ(R(ver))(∗)(Y))(2)). With σ(F(rel))(∗), σ(R(ver))(∗), Δσ(F(rel))(2), Δσ(R(ver))(2), and δ(C,parent), the obtained correlation equation can be used to correlate with the 159 sorts of SCS of the different bridge carbon in cinnamyl aniline derivatives. The correlation coefficient is 0.9993, and the standard deviation is only 0.53 ppm. The multi-parameter correlation equation can be recommended to predict well the corresponding bridge carbons SCS of disubstituted cinnamyl anilines.

摘要

已被广泛用于取代肉桂基苯胺 p-XC(6)H(4)CHCHCHNC(6)H(4)Y-p (XNO(2),Cl,H,Me,MeO 或 NMe(2);YNO(2),CN,CO(2)Et,Cl,F,H,Me,MeO 或 NMe(2)) 的桥碳 (13)C NMR 位移的桥碳 (13)C NMR 位移被用作研究共轭体系中取代基效应变化的探针。这项工作的目的是研究所有桥碳上取代基效应的差异,并在该模型化合物中发现取代基效应的交替。在这项研究中,发现不同桥碳上的诱导效应和共轭效应的变化与取代基到相应碳的键数 (m) 有关,并且可以适当地调整参数 σ(F(rel))(∗) 和 σ(R(ver))(∗) 来对桥碳上的诱导效应和共轭效应的差异进行标度。此外,由于桥碳上取代基效应的差异,取代基交叉相互作用项 Δσ(2)(Δσ(2) = (σ(F(rel))(∗)(X) + σ(R(ver))(∗)(X) - σ(F(rel))(∗)(Y) - σ(R(ver))(∗)(Y))(2)) 不适合简单地对所有桥碳上取代基 X 和 Y 之间的相互作用进行标度,因此建议将 Δσ(2) 分为两部分:Δσ(F(rel))(2)(Δσ(F(rel))(2) = σ(F(rel))(∗)(X) - σ(F(rel))(∗)(Y))(2)) 和 Δσ(R(ver))(2)(Δσ(R(ver))(2) = (σ(R(ver))(∗)(X) - σ(R(ver))(∗)(Y))(2))。利用 σ(F(rel))(∗)、σ(R(ver))(∗)、Δσ(F(rel))(2)、Δσ(R(ver))(2) 和 δ(C,parent),得到的相关方程可以用来与不同桥碳的 159 种肉桂基苯胺衍生物的 SCS 相关联。相关系数为 0.9993,标准偏差仅为 0.53 ppm。多参数相关方程可用于很好地预测二取代肉桂基苯胺的相应桥碳 SCS。

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