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Electron-counting rules, three-dimensional aromaticity, and the boundaries of the Periodic Table

机译:电子计数规则,三维芳香性和元素周期表的边界

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To describe aromaticity of planar and three-dimensional molecules, different electron counting rules are employed. Here, the relationship between the Hückel 4n + 2 rule and the Hirsch 2(n + 1)~2 rule is established based on formal approach considering the electrons as objects in an arbitrary n-dimensional space of states. Two types of three-dimensional aromaticity, referred to as 'spherical' (following the 4n + 2 electron counting rule) and 'spatial' (following the 2(n + 1)~2 electron counting rule) are distinguished. A conclusion concerning the boundaries of the Periodic Table of Elements is made based on the same formal approach that no g- (or higher) elements can exist and that possible extension of the Periodic Table beyond the seventh period must be followed by filling of the 8p or inner 6f or 7d levels.
机译:为了描述平面和三维分子的芳香性,采用了不同的电子计数规则。在此,基于形式方法,基于电子在任意n维状态空间中的对象,建立了Hückel4n + 2规则与Hirsch 2(n +1)〜2规则之间的关系。区分了三种类型的三维芳香性,分别称为“球形”(遵循4n + 2电子计数规则)和“空间”(遵循2(n + 1)〜2电子计数规则)。关于元素周期表边界的结论是基于相同的正式方法得出的,即没有g-(或更高)元素可以存在,并且必须在填充元素周期表之后填充元素周期表超出第七个周期或内部6f或7d级别。

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