首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Use of an electron equivalent relationship between bond length and bond order to study chemical bonding. Part II. A study of bond orders, bond lengths and aromaticity in polycyclic aromatic hydrocarbons
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Use of an electron equivalent relationship between bond length and bond order to study chemical bonding. Part II. A study of bond orders, bond lengths and aromaticity in polycyclic aromatic hydrocarbons

机译:在键长和键序之间使用电子当量关系来研究化学键。第二部分多环芳烃中键序,键长和芳烃的研究

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摘要

Using the recently introduced concept of electron equivalent bond order, the characteristic bond orders of benzenoid hydrocarbons were studied based on experimental data. Fragmentation schemes can be used successfully to interpret the results and provide a very simple, consistent and useful valence bond approach for benzenoid hydrocarbons. The characteristic bond orders determined from experimental bond lengths can only assume eight discrete values in a relatively narrow range between 1 2/3 and 1 1/4 and primarily depend on the number of adjacent carbon–carbon bonds in the structure. The bond orders can also be used to define a quantitative scale of aromaticity for bonds, rings or entire molecules. A method, based on the optimization of quantified tendency toward maximum aromaticity and minimum octet-rule violation simultaneously, is also presented for the prediction of bond orders (and therefore bond lengths) of benzenoid hydrocarbons without any previous experimental information.
机译:使用最近引入的电子等效键序的概念,基于实验数据研究了苯并碳氢化合物的特征键序。裂解方案可以成功地用于解释结果,并为苯类烃提供非常简单,一致和有用的价键方法。由实验键长确定的特征键序只能假设8个离散值,其范围介于1 2/3和1 1/4之间,并且主要取决于结构中相邻碳-碳键的数量。键序还可以用于定义键,环或整个分子的芳香性的定量标度。同时提出了一种基于优化的同时趋向于最大芳香度和最小八进制规则的量化趋势的方法,该方法无需任何先前的实验信息即可预测苯甲烃的键序(以及键长)。

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