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Some Novel Results Involving Prototypical Computation of Zagreb Polynomials and Indices for SiO(4) Embedded in a Chain of Silicates

A topological index as a graph parameter was obtained mathematically from the graph’s topological structure. These indices are useful for measuring the various chemical characteristics of chemical compounds in the chemical graph theory. The number of atoms that surround an atom in the molecular stru...

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Autores principales: Tag El Din, El Sayed M., Sultan, Faisal, Ghani, Muhammad Usman, Liu, Jia-Bao, Dehraj, Sanaullah, Cancan, Murat, Alharbi, Fahad M., Alhushaybari, Abdullah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822376/
https://www.ncbi.nlm.nih.gov/pubmed/36615395
http://dx.doi.org/10.3390/molecules28010201
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author Tag El Din, El Sayed M.
Sultan, Faisal
Ghani, Muhammad Usman
Liu, Jia-Bao
Dehraj, Sanaullah
Cancan, Murat
Alharbi, Fahad M.
Alhushaybari, Abdullah
author_facet Tag El Din, El Sayed M.
Sultan, Faisal
Ghani, Muhammad Usman
Liu, Jia-Bao
Dehraj, Sanaullah
Cancan, Murat
Alharbi, Fahad M.
Alhushaybari, Abdullah
author_sort Tag El Din, El Sayed M.
collection PubMed
description A topological index as a graph parameter was obtained mathematically from the graph’s topological structure. These indices are useful for measuring the various chemical characteristics of chemical compounds in the chemical graph theory. The number of atoms that surround an atom in the molecular structure of a chemical compound determines its valency. A significant number of valency-based molecular invariants have been proposed, which connect various physicochemical aspects of chemical compounds, such as vapour pressure, stability, elastic energy, and numerous others. Molecules are linked with numerical values in a molecular network, and topological indices are a term for these values. In theoretical chemistry, topological indices are frequently used to simulate the physicochemical characteristics of chemical molecules. Zagreb indices are commonly employed by mathematicians to determine the strain energy, melting point, boiling temperature, distortion, and stability of a chemical compound. The purpose of this study is to look at valency-based molecular invariants for [Formula: see text] embedded in a silicate chain under various conditions. To obtain the outcomes, the approach of atom–bond partitioning according to atom valences was applied by using the application of spectral graph theory, and we obtained different tables of atom—bond partitions of [Formula: see text]. We obtained exact values of valency-based molecular invariants, notably the first Zagreb, the second Zagreb, the hyper-Zagreb, the modified Zagreb, the enhanced Zagreb, and the redefined Zagreb (first, second, and third). We also provide a graphical depiction of the results that explains the reliance of topological indices on the specified polynomial structure parameters.
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spelling pubmed-98223762023-01-07 Some Novel Results Involving Prototypical Computation of Zagreb Polynomials and Indices for SiO(4) Embedded in a Chain of Silicates Tag El Din, El Sayed M. Sultan, Faisal Ghani, Muhammad Usman Liu, Jia-Bao Dehraj, Sanaullah Cancan, Murat Alharbi, Fahad M. Alhushaybari, Abdullah Molecules Article A topological index as a graph parameter was obtained mathematically from the graph’s topological structure. These indices are useful for measuring the various chemical characteristics of chemical compounds in the chemical graph theory. The number of atoms that surround an atom in the molecular structure of a chemical compound determines its valency. A significant number of valency-based molecular invariants have been proposed, which connect various physicochemical aspects of chemical compounds, such as vapour pressure, stability, elastic energy, and numerous others. Molecules are linked with numerical values in a molecular network, and topological indices are a term for these values. In theoretical chemistry, topological indices are frequently used to simulate the physicochemical characteristics of chemical molecules. Zagreb indices are commonly employed by mathematicians to determine the strain energy, melting point, boiling temperature, distortion, and stability of a chemical compound. The purpose of this study is to look at valency-based molecular invariants for [Formula: see text] embedded in a silicate chain under various conditions. To obtain the outcomes, the approach of atom–bond partitioning according to atom valences was applied by using the application of spectral graph theory, and we obtained different tables of atom—bond partitions of [Formula: see text]. We obtained exact values of valency-based molecular invariants, notably the first Zagreb, the second Zagreb, the hyper-Zagreb, the modified Zagreb, the enhanced Zagreb, and the redefined Zagreb (first, second, and third). We also provide a graphical depiction of the results that explains the reliance of topological indices on the specified polynomial structure parameters. MDPI 2022-12-26 /pmc/articles/PMC9822376/ /pubmed/36615395 http://dx.doi.org/10.3390/molecules28010201 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tag El Din, El Sayed M.
Sultan, Faisal
Ghani, Muhammad Usman
Liu, Jia-Bao
Dehraj, Sanaullah
Cancan, Murat
Alharbi, Fahad M.
Alhushaybari, Abdullah
Some Novel Results Involving Prototypical Computation of Zagreb Polynomials and Indices for SiO(4) Embedded in a Chain of Silicates
title Some Novel Results Involving Prototypical Computation of Zagreb Polynomials and Indices for SiO(4) Embedded in a Chain of Silicates
title_full Some Novel Results Involving Prototypical Computation of Zagreb Polynomials and Indices for SiO(4) Embedded in a Chain of Silicates
title_fullStr Some Novel Results Involving Prototypical Computation of Zagreb Polynomials and Indices for SiO(4) Embedded in a Chain of Silicates
title_full_unstemmed Some Novel Results Involving Prototypical Computation of Zagreb Polynomials and Indices for SiO(4) Embedded in a Chain of Silicates
title_short Some Novel Results Involving Prototypical Computation of Zagreb Polynomials and Indices for SiO(4) Embedded in a Chain of Silicates
title_sort some novel results involving prototypical computation of zagreb polynomials and indices for sio(4) embedded in a chain of silicates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822376/
https://www.ncbi.nlm.nih.gov/pubmed/36615395
http://dx.doi.org/10.3390/molecules28010201
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