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Computing the Reverse Eccentric Connectivity Index for Certain Family of Nanocone and Fullerene Structures

机译:计算某些纳米锥和富勒烯结构家族的反向偏心连接性指数

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A large number of previous works reveal that there exist strong connections between the chemical characteristics of chemical compounds and drugs (e.g., melting point and boiling point) and their topological structures. Chemical indices introduced on these molecular topological structures can help chemists and material and medical scientists to grasp its chemical reactivity, biological activity, and physical features better. Hence, the study of the topological indices on the material structure can make up the defect of experiments and provide the theoretical evidence in material engineering. In this paper, we determine the reverse eccentric connectivity index of one family of pentagonal carbon nanocones PCN_5 [n] and three infinite families of fullerenes C_(12n+2), C_(12n+4), and C_(18n+10) based on graph analysis and computation derivation, and these results can offer the theoretical basis for material properties.
机译:大量先前的工作表明,化合物和药物的化学特性(例如,熔点和沸点)与其拓扑结构之间存在紧密的联系。在这些分子拓扑结构上引入的化学指数可以帮助化学家,材料和医学科学家更好地掌握其化学反应性,生物活性和物理特征。因此,对材料结构拓扑指标的研究可以弥补实验的缺陷,为材料工程提供理论依据。在本文中,我们确定一个五角形碳纳米锥PCN_5 [n]和三个无限家族的C_(12n + 2),C_(12n + 4)和C_(18n + 10)的反向偏心连接指数通过图形分析和计算推导,这些结果可为材料性能提供理论依据。

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  • 来源
    《Journal of nanotechnology》 |2016年第2016期|3129561.1-3129561.6|共6页
  • 作者单位

    School of Information Science and Technology, Yunnan Normal University, Kunming 650500, China;

    Department of Applied Mathematics, Iran University of Science and Technology, Narmak, Tehran 16844, Iran;

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