TARU PUBLICATIONS
Journal of Information and Optimization Sciences cover
Hybrid ·Peer-reviewed·ISSN (Online): 2169-0103·ISSN (Print): 0252-2667

WoS  JIF 2026 : 0.4 (Q4)

Powered by:Powered by

Monthly Journal: Publishes theoretical and applied research on topics in information and optimization sciences.

Issues up to 2022 co-published with and available at:Taylor & Francis
submissions@tarupublications.com
Open Access Research Article

Calculation of Revan topological indices in TiO2[m, n] nanotubes

, *

* Corresponding author · click or hover a name for details

pp. 845–854Vol. 44Issue 5July 2023DOI: 10.47974/JIOS-1127XML
Received:
07 Jul 2021
Accepted:
11 Jan 2022
Published Online:
10 Oct 2023
Article type:
Research Article
Language:
EN
Article no.:
JIOS-1127
Pages:
845–854

Abstract

Titania nanotubes are one of the most essential and practical compounds in materials science that have many applications in the production of catalytic materials, gas sensors, biomedical devices, solar cells etc. In this article, the graph of Titania nanotubes is investigated. By providing a method to obtain the degree of vertices in the section of the corresponding nanotube, the topological indices of Revan and its Hyper Revan are calculated. Next, the Revan and Hyper Revan indices in line graph of Titania nanotubes are also computing. To compare the obtained values, diagrams of Revan and Hyper Revan indices are drawn.

Keywords

Subject Classifications

(2010) 05C9092E1005C0792E2082D80

References

[1] A. Ahmad, K. Elahi, R. Hasni & M. F. Nadeem (2019) Computing the degree based topological indices of line graph of benzene ring embedded in P-type-surface in 2D network, Journal of Information and Optimization Sciences, 40:7, 1511-1528.
[2] A. Alameri, Second Hyper Zagreb Index of Titania Nanotubes and Their Applications, IEEE Access, VOLUME 9, (2021). 
[3] R.A. Evarestov, Y.F. Zhukovskii, A.V. Bandura, S. Piskunov, Symmetry and models of single walled TiO2[m, n] nanotubes with rectangular morphology, Cent. Eur. J. Phys. 9 (2), (2011), 492–501.
[4] W., Gao, A., Qudair Baig and M., Naeem, “Revan  and  hyper-Revan  indices of Octahedral and icosahedral networks”, Applied Mathe-matics and Nonlinear Sciences, 3(1), 33 – 40, (2018).
[5] A. Iranmanesh and Y. Alizadeh, Computing Szeged and Schultz Indices of HAC5C6C7[p, q] nanotube by GAP Program, Digest. J. Nanomater. Bios. 4(1), (2009), 67-72.
[6] A. Raheem, M. Javaid, W. C. Teh, S. Wang & Jia-Bao Liu (2020) M-polynomial method for topological indices of 2D-lattice of three-layered single-walled Titania nanotubes, Journal of Information and Optimization Sciences, 41:3, 743-753.
[7] V.R. Kulli, Revan Indices of Oxide and Honeycomb Networks, International Journal of Mathematics And its Applications, Volume 5, Issue 4, (2017), 663- 667.
[8] M.A. Malik, M. Imran, On multiple Zagreb index of TiO2 nanotubes, Acta Chim. Slov. 62 (4) (2015) 973–976.
[9] M., Javaid, J., Liu, M., Rehman, S., Wang, “On the Certain Topological Indices of Titania Nanotube TiO2[m, n]” Zeitschrift für Naturforschung, A. 72. 10.1515/zna (2017)-0101.
[10] H. Wiener, Structural determination of paraffin boiling points, Journal of the American Chemical Society, 69(1), 17-20. (1947).
[11] Zhao, J., Wang, X., Sun, T., Li, L., In situ template synthesis of anatase single crystal nanotube arrays, Nanotechnology, (2005), 2450 2454.

Views: 223Downloads: 79Citations: 0