Computational notes on the effect of (Li-Na-K) on calcium zinc phosphate oxide glasses

Ibrahim, Medhtat A.; Ezzat, Hend A.; Meng, Fanli; Yahia, Ibrahim S.; Zahran, Heba Y.; Prof. Dr. Hanan Gouda Abdelwahab Ahmed Elhaes;

Abstract


© 2020 by the authors. A model molecule for P4 O10-ZnO-CaO is constructed to build Calcium Zinc Phosphate Oxide glasses. Then the effect of alkalis Li; Na and K upon the model molecule is studied with ab initio Hartree-Fockat HF/3-21G** level of theory. The overall aim is to evaluate the electronic properties of both the model molecules and alkali substituted molecules. The calculated parameters, including highest occupied molecular orbital/lowest unoccupied molecular orbital (HOMO/LUMO) bandgap energies; Total dipole moment (TDM) and molecular electrostatic potentials (MESP) are calculated. It has also been observed that the calculated TDM of the glassy system P4 O10-ZnO-CaO is increased while the HOMOH/LUMO band gap is decreased as an indication for the reactivity of the studied model molecules. The active sites for the studied models are described by the calculated MESP, which is confirming the results of both TDM and HOMO/LUMO.


Other data

Title Computational notes on the effect of (Li-Na-K) on calcium zinc phosphate oxide glasses
Authors Ibrahim, Medhtat A.; Ezzat, Hend A.; Meng, Fanli; Yahia, Ibrahim S.; Zahran, Heba Y.; Prof. Dr. Hanan Gouda Abdelwahab Ahmed Elhaes 
Keywords Alkali elements;Phosphate glass;Nano metal oxides;Hartree-Fock
Issue Date 15-Dec-2020
Publisher BIOINTERFACE RESEARCH APPLIED CHEMISTRY
Journal Biointerface Research in Applied Chemistry 
Volume 10
Issue 6
Start page 6906
End page 6911
ISSN 2069-5837
DOI 10.33263/BRIAC106.69066911
Scopus ID 2-s2.0-85090710108
Web of science ID WOS:000541606700029

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