估计某些 4-(氮烯-1-基)-2,6-二乙烯基吡啶衍生物电化学行为的扩展特征多项式

E. Ungureanu, Amalia Ștefaniu, R. Isopescu, Cornelia Musina, Magdalena-Rodica Bujduveanu, L. Jäntschi
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引用次数: 0

摘要

4-(氮烯-1-基)-2,6-二乙烯基吡啶的六种衍生物是氧化和还原电位的实验测定对象,在其他地方已有报道。本文采用了计算研究,以获得这些电位的结构函数。几何图形在三个理论水平(MMFF94、B3LYP 和 M06)上进行了优化,以下分析使用的是每个实例中分别保存的最佳几何图形。两个分子描述符系列(FMPI 和 EChP)被用来推导基于结构的描述符。对两个电位的每个系列和理论水平的最佳描述符进行了简单的线性回归。研究表明,MMFF94 最佳几何结构最能解释所选的电化学特性。此外,EChP 描述因子族比 FMPI 大得多(约 64 倍),能够更好地解释结构与性质之间的联系。这再一次表明,特征问题在结构化学中有着深厚的根基。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extended characteristic polynomial estimating the electrochemical behaviour of some 4-(azulen-1-yl)-2,6-divinylpyridine derivatives
Six derivatives of 4-(azulen-1-yl)-2,6-divinylpyridine were the subject of experimental determination of oxidation and reduction potentials being reported elsewhere. In this paper, a computational study was employed in order to obtain a function of structure for these potentials. The geometry was optimized at three theory levels (MMFF94, B3LYP and M06), and the following analysis was conducted with the separately saved optimum geometry in each instance. Two families of molecular descriptors (FMPI and EChP) were used to derive structure-based descriptors. Simple linear regressions were extracted with the best of descriptors for each family and level of theory for both potentials. The study revealed that the MMFF94 optimum geometries best explained the selected electro­chemical properties. Furthermore, the EChP family of descriptors, much bigger than FMPI (about 64 times), was able to better explain the connection between the structure and the property. Once more, it has been shown that the eigenproblem has deep roots in structural chemistry.
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