The influence of moisture on the electronic properties of monomer, dimer, trimer and emeraldine base sodium carboxymethyl cellulose

El-Khodary, Sherif; Prof. Dr. Hanan Gouda Abdelwahab Ahmed Elhaes; Nada, Nadra; Ibrahim, Medhat A.; Badry Amin Elsayed, Rania;

Abstract


©2019 National Information and Documentation Center (NIDOC). ACCORDING to previous studies on moisture effect, it is stated that moisture enhances the electronic properties of polymeric materials. A theoretical study based on density functional theory calculations at B3LYP/3-21G* is performed for investigating the effect of moisture on sodium carboxymethyl cellulose (Na-CMC) as monomer, dimer, trimer and emeraldine base. Results indicated that due to moisture, TDM is increased while HOMO/ LUMO band gap energy is decreased for the four proposed structures for Na-CMC. All results indicated that there is a change occurring in the electronic properties as a result of moisture. Furthermore, as a result of increasing the degree of polymerization, the total dipole moment (TDM) of Na-CMC is increased and equals 7.7141, 28.0388, 24.0199 and 38.3464 Debye for monomer Na-CMC, dimer Na-CMC, trimer Na-CMC and emeraldine base Na-CMC respectively. However, the highest occupied and the lowest unoccupied energy gap (HOMO/ LUMO band gap energy) decreased and equals 0.9040, 0.3448, 0.1241 and 0.9021 eV for the same sequence. Additionally, the results of ESP study of all model molecules are in good agreement with the results of TDM and HOMO/LUMO band gap energy.


Other data

Title The influence of moisture on the electronic properties of monomer, dimer, trimer and emeraldine base sodium carboxymethyl cellulose
Authors El-Khodary, Sherif; Prof. Dr. Hanan Gouda Abdelwahab Ahmed Elhaes ; Nada, Nadra; Ibrahim, Medhat A.; Badry Amin Elsayed, Rania 
Keywords B3LYP/3-21G*;TDM;Na-CMC;HOMO/LUMO band gap energy;ESP
Issue Date 1-Jan-2019
Journal Egyptian Journal of Chemistry 
Volume 62
Start page 39
End page 56
ISSN 04492285
DOI 10.21608/EJCHEM.2019.12805.1800
Scopus ID 2-s2.0-85069885177

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