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A three orders of magnitude increase in nonlinear optical response by external electric field on Cryptand[2.2.2] (C222) based alkaline earthides

A new series of alkaline earthides based on Cryptand [2.2.2] (C222) containing nine complexes is designed by carefully placing alkali metals and alkaline earth metals inside and outside the C222 complexant, respectively i.e., M1(C222)M2 (M1 = Li, Na, K; M2 = Be, Mg, Ca). The designed complexes are r...

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Autores principales: Ahsan, Annum, Fayyaz, Faiza, Sarfaraz, Sehrish, Hamid, Malai Haniti S.A., Keasberry, Natasha A., Ayub, Khurshid, Sheikh, Nadeem S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10338364/
https://www.ncbi.nlm.nih.gov/pubmed/37455946
http://dx.doi.org/10.1016/j.heliyon.2023.e17610
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author Ahsan, Annum
Fayyaz, Faiza
Sarfaraz, Sehrish
Hamid, Malai Haniti S.A.
Keasberry, Natasha A.
Ayub, Khurshid
Sheikh, Nadeem S.
author_facet Ahsan, Annum
Fayyaz, Faiza
Sarfaraz, Sehrish
Hamid, Malai Haniti S.A.
Keasberry, Natasha A.
Ayub, Khurshid
Sheikh, Nadeem S.
author_sort Ahsan, Annum
collection PubMed
description A new series of alkaline earthides based on Cryptand [2.2.2] (C222) containing nine complexes is designed by carefully placing alkali metals and alkaline earth metals inside and outside the C222 complexant, respectively i.e., M1(C222)M2 (M1 = Li, Na, K; M2 = Be, Mg, Ca). The designed complexes are reasonably stable both electronically and thermodynamically, as revealed through their vertical ionization potentials (VIPs) and interaction energies, respectively. Moreover, the true alkaline earthide nature of the complexes is confirmed through NBO and FMO analyses showing the negative charges and HOMOs over the alkaline earth metals, respectively. The further validity of true earthide characteristic is represented graphically by the spectra of partial density of states (PDOS). HOMO-LUMO gaps of the compounds are also very small (from 2.23 to 2.83 eV) when compared with pure cage's (C222) H-L gap i.e., 5.63 eV. All these features award these complexes with very small values of transition energies (ΔE) ranging from 0.68 to 2.06 eV ultimately resulting in remarkably high hyperpolarizability values up to 2.7 × 10(5) au (for Na(+)(C222)Mg(−)). Furthermore, applying external electric field (EEF) on the complexes enhances hyperpolarizability further. A remarkable increase of 1000 folds has been seen when hyperpolarizability of K(+)(C222)Ca(−) is calculated after EEF application i.e., from 8.79 × 10(4) au to 2.48 × 10(7) au; when subjected to 0.001 au external electric field.
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spelling pubmed-103383642023-07-14 A three orders of magnitude increase in nonlinear optical response by external electric field on Cryptand[2.2.2] (C222) based alkaline earthides Ahsan, Annum Fayyaz, Faiza Sarfaraz, Sehrish Hamid, Malai Haniti S.A. Keasberry, Natasha A. Ayub, Khurshid Sheikh, Nadeem S. Heliyon Research Article A new series of alkaline earthides based on Cryptand [2.2.2] (C222) containing nine complexes is designed by carefully placing alkali metals and alkaline earth metals inside and outside the C222 complexant, respectively i.e., M1(C222)M2 (M1 = Li, Na, K; M2 = Be, Mg, Ca). The designed complexes are reasonably stable both electronically and thermodynamically, as revealed through their vertical ionization potentials (VIPs) and interaction energies, respectively. Moreover, the true alkaline earthide nature of the complexes is confirmed through NBO and FMO analyses showing the negative charges and HOMOs over the alkaline earth metals, respectively. The further validity of true earthide characteristic is represented graphically by the spectra of partial density of states (PDOS). HOMO-LUMO gaps of the compounds are also very small (from 2.23 to 2.83 eV) when compared with pure cage's (C222) H-L gap i.e., 5.63 eV. All these features award these complexes with very small values of transition energies (ΔE) ranging from 0.68 to 2.06 eV ultimately resulting in remarkably high hyperpolarizability values up to 2.7 × 10(5) au (for Na(+)(C222)Mg(−)). Furthermore, applying external electric field (EEF) on the complexes enhances hyperpolarizability further. A remarkable increase of 1000 folds has been seen when hyperpolarizability of K(+)(C222)Ca(−) is calculated after EEF application i.e., from 8.79 × 10(4) au to 2.48 × 10(7) au; when subjected to 0.001 au external electric field. Elsevier 2023-06-24 /pmc/articles/PMC10338364/ /pubmed/37455946 http://dx.doi.org/10.1016/j.heliyon.2023.e17610 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Ahsan, Annum
Fayyaz, Faiza
Sarfaraz, Sehrish
Hamid, Malai Haniti S.A.
Keasberry, Natasha A.
Ayub, Khurshid
Sheikh, Nadeem S.
A three orders of magnitude increase in nonlinear optical response by external electric field on Cryptand[2.2.2] (C222) based alkaline earthides
title A three orders of magnitude increase in nonlinear optical response by external electric field on Cryptand[2.2.2] (C222) based alkaline earthides
title_full A three orders of magnitude increase in nonlinear optical response by external electric field on Cryptand[2.2.2] (C222) based alkaline earthides
title_fullStr A three orders of magnitude increase in nonlinear optical response by external electric field on Cryptand[2.2.2] (C222) based alkaline earthides
title_full_unstemmed A three orders of magnitude increase in nonlinear optical response by external electric field on Cryptand[2.2.2] (C222) based alkaline earthides
title_short A three orders of magnitude increase in nonlinear optical response by external electric field on Cryptand[2.2.2] (C222) based alkaline earthides
title_sort three orders of magnitude increase in nonlinear optical response by external electric field on cryptand[2.2.2] (c222) based alkaline earthides
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10338364/
https://www.ncbi.nlm.nih.gov/pubmed/37455946
http://dx.doi.org/10.1016/j.heliyon.2023.e17610
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