Density Functional Studies of the Dipole Polarizabilities of Substituted Stilbene, Azoarene and Related Push-Pull Molecules

We report high quality B3LYP Ab Initio studies of the electric dipole polarizability of three related series of molecules: para-XC6H4Y, XC6H4CH=CHC6H4Y and XC6H4N=NC6H4Y, where X and Y represent H together with the six various activating through deactivating groups NH2, OH, OCH3, CHO, CN and NO2. Mo...

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Main Authors: Humberto J. Soscún Machado, Beatrice Nikolaidi, Alan Hinchliffe
Format: Article
Language:English
Published: MDPI AG 2004-09-01
Series:International Journal of Molecular Sciences
Subjects:
AM1
Online Access:http://www.mdpi.com/1422-0067/5/8/224/
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spelling doaj-a77af355909b4ce9b2d5a3c58b3a100d2020-11-25T01:01:00ZengMDPI AGInternational Journal of Molecular Sciences1422-00672004-09-015822423810.3390/i5050224Density Functional Studies of the Dipole Polarizabilities of Substituted Stilbene, Azoarene and Related Push-Pull MoleculesHumberto J. Soscún MachadoBeatrice NikolaidiAlan HinchliffeWe report high quality B3LYP Ab Initio studies of the electric dipole polarizability of three related series of molecules: para-XC6H4Y, XC6H4CH=CHC6H4Y and XC6H4N=NC6H4Y, where X and Y represent H together with the six various activating through deactivating groups NH2, OH, OCH3, CHO, CN and NO2. Molecules for which X is activating and Y deactivating all show an enhancement to the mean polarizability compared to the unsubstituted molecule, in accord with the order given above. A number of representative Ab Initio calculations at different levels of theory are discussed for azoarene; all subsequent Ab Initio polarizability calculations were done at the B3LYP/6-311G(2d,1p)//B3LYP/6-311++G(2d,1p) level of theory. We also consider semi-empirical polarizability and molecular volume calculations at the AM1 level of theory together with QSAR-quality empirical polarizability calculations using Miller’s scheme. Least-squares correlations between the various sets of results show that these less costly procedures are reliable predictors of <α> for the first series of molecules, but less reliable for the larger molecules.http://www.mdpi.com/1422-0067/5/8/224/Ab InitioMiller indicesAM1dipole polarizabilityQSARStilbeneazoarenepush-pull mechanism
collection DOAJ
language English
format Article
sources DOAJ
author Humberto J. Soscún Machado
Beatrice Nikolaidi
Alan Hinchliffe
spellingShingle Humberto J. Soscún Machado
Beatrice Nikolaidi
Alan Hinchliffe
Density Functional Studies of the Dipole Polarizabilities of Substituted Stilbene, Azoarene and Related Push-Pull Molecules
International Journal of Molecular Sciences
Ab Initio
Miller indices
AM1
dipole polarizability
QSAR
Stilbene
azoarene
push-pull mechanism
author_facet Humberto J. Soscún Machado
Beatrice Nikolaidi
Alan Hinchliffe
author_sort Humberto J. Soscún Machado
title Density Functional Studies of the Dipole Polarizabilities of Substituted Stilbene, Azoarene and Related Push-Pull Molecules
title_short Density Functional Studies of the Dipole Polarizabilities of Substituted Stilbene, Azoarene and Related Push-Pull Molecules
title_full Density Functional Studies of the Dipole Polarizabilities of Substituted Stilbene, Azoarene and Related Push-Pull Molecules
title_fullStr Density Functional Studies of the Dipole Polarizabilities of Substituted Stilbene, Azoarene and Related Push-Pull Molecules
title_full_unstemmed Density Functional Studies of the Dipole Polarizabilities of Substituted Stilbene, Azoarene and Related Push-Pull Molecules
title_sort density functional studies of the dipole polarizabilities of substituted stilbene, azoarene and related push-pull molecules
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1422-0067
publishDate 2004-09-01
description We report high quality B3LYP Ab Initio studies of the electric dipole polarizability of three related series of molecules: para-XC6H4Y, XC6H4CH=CHC6H4Y and XC6H4N=NC6H4Y, where X and Y represent H together with the six various activating through deactivating groups NH2, OH, OCH3, CHO, CN and NO2. Molecules for which X is activating and Y deactivating all show an enhancement to the mean polarizability compared to the unsubstituted molecule, in accord with the order given above. A number of representative Ab Initio calculations at different levels of theory are discussed for azoarene; all subsequent Ab Initio polarizability calculations were done at the B3LYP/6-311G(2d,1p)//B3LYP/6-311++G(2d,1p) level of theory. We also consider semi-empirical polarizability and molecular volume calculations at the AM1 level of theory together with QSAR-quality empirical polarizability calculations using Miller’s scheme. Least-squares correlations between the various sets of results show that these less costly procedures are reliable predictors of <α> for the first series of molecules, but less reliable for the larger molecules.
topic Ab Initio
Miller indices
AM1
dipole polarizability
QSAR
Stilbene
azoarene
push-pull mechanism
url http://www.mdpi.com/1422-0067/5/8/224/
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