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

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 ch...

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Main Authors: Wei Gao, Mohammad Reza Farahani
Format: Article
Language:English
Published: Wiley 2016-01-01
Series:Journal of Nanotechnology
Online Access:http://dx.doi.org/10.1155/2016/3129561
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author Wei Gao
Mohammad Reza Farahani
author_facet Wei Gao
Mohammad Reza Farahani
author_sort Wei Gao
collection DOAJ
description 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 PCN5[n] and three infinite families of fullerenes C12n+2,  C12n+4, and C18n+10 based on graph analysis and computation derivation, and these results can offer the theoretical basis for material properties.
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institution Kabale University
issn 1687-9503
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publishDate 2016-01-01
publisher Wiley
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series Journal of Nanotechnology
spelling doaj-art-50dbf411982544c393bebe11acb390382025-02-03T05:47:46ZengWileyJournal of Nanotechnology1687-95031687-95112016-01-01201610.1155/2016/31295613129561Computing the Reverse Eccentric Connectivity Index for Certain Family of Nanocone and Fullerene StructuresWei Gao0Mohammad Reza Farahani1School of Information Science and Technology, Yunnan Normal University, Kunming 650500, ChinaDepartment of Applied Mathematics, Iran University of Science and Technology, Narmak, Tehran 16844, IranA 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 PCN5[n] and three infinite families of fullerenes C12n+2,  C12n+4, and C18n+10 based on graph analysis and computation derivation, and these results can offer the theoretical basis for material properties.http://dx.doi.org/10.1155/2016/3129561
spellingShingle Wei Gao
Mohammad Reza Farahani
Computing the Reverse Eccentric Connectivity Index for Certain Family of Nanocone and Fullerene Structures
Journal of Nanotechnology
title Computing the Reverse Eccentric Connectivity Index for Certain Family of Nanocone and Fullerene Structures
title_full Computing the Reverse Eccentric Connectivity Index for Certain Family of Nanocone and Fullerene Structures
title_fullStr Computing the Reverse Eccentric Connectivity Index for Certain Family of Nanocone and Fullerene Structures
title_full_unstemmed Computing the Reverse Eccentric Connectivity Index for Certain Family of Nanocone and Fullerene Structures
title_short Computing the Reverse Eccentric Connectivity Index for Certain Family of Nanocone and Fullerene Structures
title_sort computing the reverse eccentric connectivity index for certain family of nanocone and fullerene structures
url http://dx.doi.org/10.1155/2016/3129561
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AT mohammadrezafarahani computingthereverseeccentricconnectivityindexforcertainfamilyofnanoconeandfullerenestructures