On ve-degree- and ev-degree-based topological properties of crystallographic structure of cuprite Cu2O

In the study of chemical graph theory, an enormous number of research analyses have confirmed that the characteristics of chemicals have a nearby connection with their atomic structure. Topological indices were the critical tools for the analysis of these chemical substances to consider the essentia...

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Autores principales: Chen Shu-Bo, Rauf Abdul, Ishtiaq Muhammad, Naeem Muhammad, Aslam Adnan
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Lenguaje:EN
Publicado: De Gruyter 2021
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Acceso en línea:https://doaj.org/article/b82883b050e94cdeba5f78d86756b779
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spelling oai:doaj.org-article:b82883b050e94cdeba5f78d86756b7792021-12-05T14:10:44ZOn ve-degree- and ev-degree-based topological properties of crystallographic structure of cuprite Cu2O2391-542010.1515/chem-2021-0051https://doaj.org/article/b82883b050e94cdeba5f78d86756b7792021-05-01T00:00:00Zhttps://doi.org/10.1515/chem-2021-0051https://doaj.org/toc/2391-5420In the study of chemical graph theory, an enormous number of research analyses have confirmed that the characteristics of chemicals have a nearby connection with their atomic structure. Topological indices were the critical tools for the analysis of these chemical substances to consider the essential topology of chemical structures. Topological descriptors are the significant numerical quantities or invariant in the fields of chemical graph theory. In this study, we have studied the crystal structure of copper oxide (Cu2O{{\rm{Cu}}}_{2}{\rm{O}}) chemical graph, and further, we have calculated the ev-degree- and ve-degree-based topological indices of copper oxide chemical graph. This kind of study may be useful for understanding the atomic mechanisms of corrosion and stress–corrosion cracking of copper.Chen Shu-BoRauf AbdulIshtiaq MuhammadNaeem MuhammadAslam AdnanDe Gruyterarticleev-degreeve-degreetopological indicescuprite cu2o05c0905c9292e10ChemistryQD1-999ENOpen Chemistry, Vol 19, Iss 1, Pp 576-585 (2021)
institution DOAJ
collection DOAJ
language EN
topic ev-degree
ve-degree
topological indices
cuprite cu2o
05c09
05c92
92e10
Chemistry
QD1-999
spellingShingle ev-degree
ve-degree
topological indices
cuprite cu2o
05c09
05c92
92e10
Chemistry
QD1-999
Chen Shu-Bo
Rauf Abdul
Ishtiaq Muhammad
Naeem Muhammad
Aslam Adnan
On ve-degree- and ev-degree-based topological properties of crystallographic structure of cuprite Cu2O
description In the study of chemical graph theory, an enormous number of research analyses have confirmed that the characteristics of chemicals have a nearby connection with their atomic structure. Topological indices were the critical tools for the analysis of these chemical substances to consider the essential topology of chemical structures. Topological descriptors are the significant numerical quantities or invariant in the fields of chemical graph theory. In this study, we have studied the crystal structure of copper oxide (Cu2O{{\rm{Cu}}}_{2}{\rm{O}}) chemical graph, and further, we have calculated the ev-degree- and ve-degree-based topological indices of copper oxide chemical graph. This kind of study may be useful for understanding the atomic mechanisms of corrosion and stress–corrosion cracking of copper.
format article
author Chen Shu-Bo
Rauf Abdul
Ishtiaq Muhammad
Naeem Muhammad
Aslam Adnan
author_facet Chen Shu-Bo
Rauf Abdul
Ishtiaq Muhammad
Naeem Muhammad
Aslam Adnan
author_sort Chen Shu-Bo
title On ve-degree- and ev-degree-based topological properties of crystallographic structure of cuprite Cu2O
title_short On ve-degree- and ev-degree-based topological properties of crystallographic structure of cuprite Cu2O
title_full On ve-degree- and ev-degree-based topological properties of crystallographic structure of cuprite Cu2O
title_fullStr On ve-degree- and ev-degree-based topological properties of crystallographic structure of cuprite Cu2O
title_full_unstemmed On ve-degree- and ev-degree-based topological properties of crystallographic structure of cuprite Cu2O
title_sort on ve-degree- and ev-degree-based topological properties of crystallographic structure of cuprite cu2o
publisher De Gruyter
publishDate 2021
url https://doaj.org/article/b82883b050e94cdeba5f78d86756b779
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