首页> 外文期刊>Fullerenes, Nanotubes and Carbon Nanostructures >Theoretical Study of the Relationship Between Wiener, Padmakar-Ivan, and Szeged Topological Indices in Contrast to Energy, Electric Moments and Partition Coefficient of Armchair Polyhex Carbon Nanotubes with Various Circumference and Fixed Lengths
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Theoretical Study of the Relationship Between Wiener, Padmakar-Ivan, and Szeged Topological Indices in Contrast to Energy, Electric Moments and Partition Coefficient of Armchair Polyhex Carbon Nanotubes with Various Circumference and Fixed Lengths

机译:Wiener,Padmakar-Ivan和塞格德拓扑指标与各种周长和固定长度的扶手椅形六方碳纳米管的能量,电力矩和分配系数的关系的理论研究

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摘要

The use of theoretical tools for the molecular modeling of physicochemical processes and chemical reaction is one of the main distinctive characteristics of modern chemistry. Topological indices have attracted more attention from theoretical chemists and others and have become the focus of computational chemistry. Chemical graph theory is a branch of mathematics which combines graph theory and chemistry and has been extensively applied to predicting the physical properties of small molecules through Quantitative Structure Property Relationship (QSPR). Quantum chemical calculations are thus an attractive source of new molecular descriptors, which can, in principle, express all of the electronic and geometric properties of molecules and their intractions. Electric moments and energies of molecules are examples of quantum chemical descriptors used in QSPR studies. In this study, the relationship between some of the topological indices such as Wiener, Padmakar-Ivan, Szeged indices and partition coefficient (Log P) in contrast to the electric moments and energy (kJmol−1) of some armchair polyhex carbon nanotubes TUVC6[2p,q] with various circumference and fixed lengths are represented. Each nanotube is optimized at the level of the Becke3, Lee-Yang-Parr (B3LYP) method, using the 3-21G standard basis set. The relationship between topological and quantum chemical descriptors are discussed in this study.
机译:使用理论工具对物理化学过程和化学反应进行分子建模是现代化学的主要特色之一。拓扑指数已引起理论化学家和其他学者的更多关注,并已成为计算化学的重点。化学图论是将图论和化学结合起来的数学的一个分支,已被广泛应用于通过定量结构性质关系(QSPR)预测小分子的物理性质。因此,量子化学计算是新的分子描述子的诱人来源,它们可以从原则上表达分子的所有电子和几何特性及其引力。分子的电力矩和能量是QSPR研究中使用的量子化学描述符的例子。在这项研究中,某些拓扑指数(如维纳,帕德玛卡-伊凡,塞格德指数)与分配系数(Log P)之间的关系与电力矩和能量(kJmol â1’s )表示了一些具有不同周长和固定长度的扶手椅多六角碳纳米管TUVC 6 [2p,q]。使用3-21G标准基础集,在Becke3 Lee-Yang-Parr(B3LYP)方法的水平上优化了每个纳米管。在这项研究中讨论了拓扑和量子化学描述符之间的关系。

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