Toward Exploring Novel Organic Materials: MP4-DFT Properties of 4-Amino-3-Iminoindene

Tautomerism links with many applications and remains an attracting feature in exploring novel systems. In this regard, properties of indene-based HNCCCN segments have not received any considerable attention. In this computational organic chemistry study, first, to calculate the proton transfer energ...

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Main Author: Tareq Irshaidat
Format: Article
Language:English
Published: MDPI AG 2017-04-01
Series:Molecules
Subjects:
Online Access:http://www.mdpi.com/1420-3049/22/5/720
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spelling doaj-6cf9cd8ac48147619ce9d6d87a62eaf22020-11-25T00:59:07ZengMDPI AGMolecules1420-30492017-04-0122572010.3390/molecules22050720molecules22050720Toward Exploring Novel Organic Materials: MP4-DFT Properties of 4-Amino-3-IminoindeneTareq Irshaidat0Department of Chemistry, College of Sciences, Al-Hussein Bin Talal University, P. O. Box 20, Ma’an, JordanTautomerism links with many applications and remains an attracting feature in exploring novel systems. In this regard, properties of indene-based HNCCCN segments have not received any considerable attention. In this computational organic chemistry study, first, to calculate the proton transfer energy barrier at a reasonable cost, the study identified an accurate forth order Møller–Plesset perturbation theory-density functional theory (MP4-DFT) protocol equivalent to the outstanding pioneering benchmark calculations. The calculations illustrate that the two tautomers of the 4-amino-3-iminoindene nucleus are separated by a considerable energy barrier while featuring different molecular orbital characteristics; frontier orbital distribution, λmax, and energies, which are known basic requirements in molecular switching and logic circuit applications. The N-H/BH2 substitution was found to have significant influence on the electronic structure of the skeleton. Similarities in the two tautomers and the boron derivative to properties of known molecular materials have been found.http://www.mdpi.com/1420-3049/22/5/720tautomerismMP4(SDTQ)molecular switchingCAM-B3LYPfrontier orbitalssemiconductor
collection DOAJ
language English
format Article
sources DOAJ
author Tareq Irshaidat
spellingShingle Tareq Irshaidat
Toward Exploring Novel Organic Materials: MP4-DFT Properties of 4-Amino-3-Iminoindene
Molecules
tautomerism
MP4(SDTQ)
molecular switching
CAM-B3LYP
frontier orbitals
semiconductor
author_facet Tareq Irshaidat
author_sort Tareq Irshaidat
title Toward Exploring Novel Organic Materials: MP4-DFT Properties of 4-Amino-3-Iminoindene
title_short Toward Exploring Novel Organic Materials: MP4-DFT Properties of 4-Amino-3-Iminoindene
title_full Toward Exploring Novel Organic Materials: MP4-DFT Properties of 4-Amino-3-Iminoindene
title_fullStr Toward Exploring Novel Organic Materials: MP4-DFT Properties of 4-Amino-3-Iminoindene
title_full_unstemmed Toward Exploring Novel Organic Materials: MP4-DFT Properties of 4-Amino-3-Iminoindene
title_sort toward exploring novel organic materials: mp4-dft properties of 4-amino-3-iminoindene
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2017-04-01
description Tautomerism links with many applications and remains an attracting feature in exploring novel systems. In this regard, properties of indene-based HNCCCN segments have not received any considerable attention. In this computational organic chemistry study, first, to calculate the proton transfer energy barrier at a reasonable cost, the study identified an accurate forth order Møller–Plesset perturbation theory-density functional theory (MP4-DFT) protocol equivalent to the outstanding pioneering benchmark calculations. The calculations illustrate that the two tautomers of the 4-amino-3-iminoindene nucleus are separated by a considerable energy barrier while featuring different molecular orbital characteristics; frontier orbital distribution, λmax, and energies, which are known basic requirements in molecular switching and logic circuit applications. The N-H/BH2 substitution was found to have significant influence on the electronic structure of the skeleton. Similarities in the two tautomers and the boron derivative to properties of known molecular materials have been found.
topic tautomerism
MP4(SDTQ)
molecular switching
CAM-B3LYP
frontier orbitals
semiconductor
url http://www.mdpi.com/1420-3049/22/5/720
work_keys_str_mv AT tareqirshaidat towardexploringnovelorganicmaterialsmp4dftpropertiesof4amino3iminoindene
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