Modeling The Physicochemical Characteristics of Benzene Compounds Through the Application of Zagreb Omicron Indices
Abstract
Keywords
QSPR studies, Benzenes, Topological indices, Omicron degree, Zagreb omicron indices
References
- [1] Kumar V., Das S., On Structure Sensitivity and Chemical Applicability of Some Novel Degree-Based Topological Indices, MATCH Commun. Math. Comput. Chem., 92 (2024) 165–203.
- [2] Wiener H., Structural determination of paraffin boiling points, J. Am. Chem. Soc., 69 (1947) 17–20.
- [3] Platt J. R., Influence of neighbour bonds on additive bond properties in paraffins, J. Chem. Phys., 15 (1947) 419-420.
- [4] Hosoya H., The most private features of the topological index, MATI., (1) (2019) 25-33.
- [5] Gutman I., Trinajstić N., Graph theory and molecular orbitals, Total π electron energy of alternant hydrocarbons, Chem. Phys. Lett., 17 (1972) 535–538.
- [6] Randić M., Characterization of molecular branching, J. Am. Chem. Soc., 97 (1975) 6609–6615.
- [7] Gutman I., Furtula B., Elphick C., Three new/old vertex-degree-based topological indices, MATCH Commun. Math. Comput. Chem., 72 (2014) 617–632.
- [8] Zhou B., Trinajstić N., On a novel connectivity index, J. Math. Chem., 46 (2009) 1252–1270.
- [9] Vukičević D., Gašperov M., Bond additive modeling 1. Adriatic indices, Croat. Chem. Acta., 83 (2010) 243–260.
- [10] Favaron O., Mahéo M., Saclé J. F., Some eigenvalue properties in graphs (conjectures of graffiti-II), Discrete Math., 111 (1993) 197–220.