Energetics of C8B8N8, N12B12, and C24 Macrocycles and Two [4]Catenanes

L. Jäntschi
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引用次数: 1

Abstract

Polyynes are alternations of single and triple bonds between carbon atoms, while cumulenes are successions of double bonds. Since the triple bond is the strongest bond between two carbon atoms, recent preoccupations included synthesizing and condensing cyclic polyynes and cumulenes and their clusters. Density functional theory calculations predicted stable monocyclic rings formation for a number of C atoms equal to or higher than 16. Alternative to the series of Carbon atoms are alternations of Boron and Nitrogen. Large rings (such as those of 24 atoms) can be crossed and thus small clusters can be formed. Patterns of three crosses seem to further stabilize the atomic ensemble. Clusters of 4C24 and 4B12N12 (96 atoms) as well as 4C26 (104 atoms) have been designed, and their conformation has been studied here.
C8B8N8, N12B12和C24大环和两个[4]链烷的能量学
聚炔是碳原子间单键和三键的交替,而积云是双键的连续。由于三键是两个碳原子之间最强的键,最近的研究重点包括合成和凝聚环状多聚体和积云及其簇。密度泛函理论计算预测了C原子数等于或大于16的稳定单环的形成。替代碳原子系列的是硼原子和氮原子的变体。大的环(比如由24个原子组成的环)可以交叉,从而形成小的团簇。三个交叉的图案似乎进一步稳定了原子系综。设计了4C24和4B12N12(96个原子)以及4C26(104个原子)簇,并对其构象进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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