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凯库勒结构镶嵌的拓扑表征与图熵:等熵结构的存在及其在热化学、核磁共振和电子自旋共振中的应用

Topological Characterization and Graph Entropies of Tessellations of Kekulene Structures: Existence of Isentropic Structures and Applications to Thermochemistry, Nuclear Magnetic Resonance, and Electron Spin Resonance.

作者信息

Kavitha S Ruth Julie, Abraham Jessie, Arockiaraj Micheal, Jency Joseph, Balasubramanian Krishnan

机构信息

Department of Mathematics, Loyola College, Chennai 600034, India.

Department of Mathematics, KCG College of Technology, Chennai 600097, India.

出版信息

J Phys Chem A. 2021 Sep 16;125(36):8140-8158. doi: 10.1021/acs.jpca.1c06264. Epub 2021 Sep 1.

DOI:10.1021/acs.jpca.1c06264
PMID:34469167
Abstract

Tessellations of kekulenes and cycloarenes are of considerable interest as nanomolecular belts in trapping and transportation of heavy metal ions and chloride ions, as they possess optimal electronic features and pore sizes. A class of cycloarenes called kekulenes have been the focus of several experimental and theoretical studies from the stand point of aromaticity, superaromaticity, chirality, and novel electrical and magnetic properties. In the present study, we investigate the entropies and topological characterization of different tessellations of kekulenes through topological computations of superaromatic structures with pores. We introduce the self-powered vertex degree-based topological indices and then derive the graph entropy measures for three different tessellations (zigzag, armchair, and rectangular) various molecular descriptors that we derive here. Several applications to computing the molecular properties are pointed out. We demonstrate the existence of isentropic and yet nonisomorphic tessellations of kekulenes for the first time. The two tessellations are predicted to be quite close in energy with comparable energy gaps. Graph theory-based PPP methods with parameters derived from higher levels of theory are proposed to be promising tools for the predictions of relative stabilities of kekulene tessellations. We show that the developed techniques can be applied in the general context of artificial intelligence for the machine generation of nuclear magnetic resonance and electron spin resonance spectroscopic patterns as well as in robust computations of thermochemistry of a large combinatorial libraries of tessellations of kekulenes through the generation of bond-equivalence classes.

摘要

克库勒烯和环芳烃的镶嵌结构作为捕获和运输重金属离子及氯离子的纳米分子带备受关注,因为它们具有最佳的电子特性和孔径。一类被称为克库勒烯的环芳烃,从芳香性、超芳香性、手性以及新颖的电学和磁学性质等角度,一直是多项实验和理论研究的焦点。在本研究中,我们通过对具有孔的超芳香结构进行拓扑计算,研究了克库勒烯不同镶嵌结构的熵和拓扑特征。我们引入了基于自供电顶点度的拓扑指数,然后针对三种不同的镶嵌结构(锯齿形、扶手椅形和矩形)推导了图熵度量以及我们在此得出的各种分子描述符。指出了在计算分子性质方面的一些应用。我们首次证明了克库勒烯存在等熵但不同构的镶嵌结构。预计这两种镶嵌结构在能量上相当接近,具有可比的能隙。提出基于图论的PPP方法,其参数源自更高层次的理论,有望成为预测克库勒烯镶嵌结构相对稳定性的工具。我们表明,所开发的技术可应用于人工智能的一般背景下,用于核磁共振和电子自旋共振光谱模式的机器生成,以及通过生成键等价类对克库勒烯镶嵌结构的大型组合库的热化学进行稳健计算。

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