Computational Chemistry

Volume 9, Issue 4 (October 2021)

ISSN Print: 2332-5968   ISSN Online: 2332-5984

Google-based Impact Factor: 0.82  Citations  

A Quantum Chemical Screening of Two Imidazole-Chalcone Hybrid Ligands and Their Pd, Pt and Zn Complexes for Charge Transport and Nonlinear Optical (NLO) Properties: A DFT Study

HTML  XML Download Download as PDF (Size: 1640KB)  PP. 215-237  
DOI: 10.4236/cc.2021.94012    463 Downloads   1,587 Views  Citations

ABSTRACT

A quantum chemical screening of two imidazole-based chalcone ligands: 2- [1-(3-(1H-imidazol-1-yl)propylimino)-3-(phenylallyl)]phenol and 2-[1-(3-(1H- imidazol-1-yl)propylimino)-3-4-nitrophenylallyl]phenol (hereinafter referred to as HL1 and HL2 respectively) and their Pd, Pt and Zn chelates for charge transport and nonlinear optical (NLO) properties, is reported via dispersion- corrected density functional theory (DFT-D3) and time-dependent DFT (TD- DFT) methods. From our results, Pd and Pt complexes have been observed to show excellent hole-transport properties, owing to their very small reorganization energies. The light extraction efficiency of the HL1-Pt complex was deduced to be particularly impressive, thus suitable for the manufacture of hole transport layer in violet light emitting diodes (LEDs). Moreover, redox potentials and chemical stability studies have enabled us to validate the greater stability in moisture (towards oxidation), of HL2 complexes compared to their HL1 counterparts. The first and second hyperpolarizabilities of both ligands and their complexes have been found to be outstandingly higher than those of the push-pull prototypical, para-nitroaniline by factors of up to 12 in the case of HL2. These compounds, with the exception of the HL2-Pt complex, are thus interesting candidates having wide transparency tradeoffs for NLO efficiency in the manufacture of optoelectronic and photonic devices capable of second and third-order NLO response. Finally, metal chelation has been established to enhance the NLO response of all the chalcone-based imidazole ligands investigated as a result of metal-ligand charge transfer and ligand- metal charge transfer electronic transitions identified in the resulting complexes with the exception of the zinc complexes.

Share and Cite:

Bine, F. , Tasheh, N. and Ghogomu, J. (2021) A Quantum Chemical Screening of Two Imidazole-Chalcone Hybrid Ligands and Their Pd, Pt and Zn Complexes for Charge Transport and Nonlinear Optical (NLO) Properties: A DFT Study. Computational Chemistry, 9, 215-237. doi: 10.4236/cc.2021.94012.

Cited by

[1] DFT study of the intrinsic electronic, optical, NBO, transport, and thermodynamic properties of 12, 12-dimethyl-7-phenyl-7, 12-dihydrobenzo [a] acridine-3-carbonitrile …
Chinese Journal of …, 2024
[2] A Theoretical Study of Tris-(o-benzoquinonediimine)-First-Row Divalent Transition Metal Complexes
Advances in Chemical …, 2023
[3] Theoretical Investigation of the Nonlinear Optical and Charge Transport Properties of N-(4-Methoxybenzylidene) Isonicotinohydrazone and Some of Its …
Advances in Materials …, 2023
[4] Theoretical Investigation of the Nonlinear Optical and Charge Transport Properties of N‐(4‐Methoxybenzylidene) Isonicotinohydrazone and Some of Its Derivatives: A …
Advances in Materials …, 2023
[5] A DFT and TD‐DFT Study of Two Hydralazine Derivatives for Organic Solar Cells and Nonlinear Optical Applications
Journal of …, 2023
[6] A Tetracyanobutadiene Spirobifluorene: Synthesis, Enantiomeric Resolution and Chiroptical Properties
European Journal of …, 2022
[7] A DFT and TD-DFT study of charge transport and non-linear optical properties of N-(4-methoxybenzylidene) isonicotinohydrazone, 2, 2'-bipyridine and their Fe2+ …
Journal of Chemical …, 2022

Copyright © 2026 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.