Theoretical Prediction for Synthetic Realization: Pyramidal Systems ClE[E′4R4] (E = B–Ga, E′ = C–Ge, R = SiMe3, SiMetBu2): A DFT Study

Structure and bonding of hybrid group 13/14 pyramidal molecules ClE[E′4R4] (E = B–Ga, E′ = C–Ge, R = SiMe3, SiMetBu2) were studied by DFT calculations. Six pyramidal structures are suggested for their potential synthetic realization.

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Main Authors: Olga A. Gapurenko, Vladimir Ya. Lee, Ruslan M. Minyaev, Vladimir I. Minkin
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:Heteroatom Chemistry
Online Access:http://dx.doi.org/10.1155/2019/3659287
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author Olga A. Gapurenko
Vladimir Ya. Lee
Ruslan M. Minyaev
Vladimir I. Minkin
author_facet Olga A. Gapurenko
Vladimir Ya. Lee
Ruslan M. Minyaev
Vladimir I. Minkin
author_sort Olga A. Gapurenko
collection DOAJ
description Structure and bonding of hybrid group 13/14 pyramidal molecules ClE[E′4R4] (E = B–Ga, E′ = C–Ge, R = SiMe3, SiMetBu2) were studied by DFT calculations. Six pyramidal structures are suggested for their potential synthetic realization.
format Article
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institution Kabale University
issn 1042-7163
1098-1071
language English
publishDate 2019-01-01
publisher Wiley
record_format Article
series Heteroatom Chemistry
spelling doaj-art-76ff93247d8641038e1eebc93db45b202025-02-03T06:44:48ZengWileyHeteroatom Chemistry1042-71631098-10712019-01-01201910.1155/2019/36592873659287Theoretical Prediction for Synthetic Realization: Pyramidal Systems ClE[E′4R4] (E = B–Ga, E′ = C–Ge, R = SiMe3, SiMetBu2): A DFT StudyOlga A. Gapurenko0Vladimir Ya. Lee1Ruslan M. Minyaev2Vladimir I. Minkin3Institute of Physical and Organic Chemistry, Southern Federal University, 344090 Rostov on Don, RussiaDepartment of Chemistry, Graduate School of Pure and Applied Sciences, University of Tsukuba, Tsukuba 305–8571, Ibaraki, JapanInstitute of Physical and Organic Chemistry, Southern Federal University, 344090 Rostov on Don, RussiaInstitute of Physical and Organic Chemistry, Southern Federal University, 344090 Rostov on Don, RussiaStructure and bonding of hybrid group 13/14 pyramidal molecules ClE[E′4R4] (E = B–Ga, E′ = C–Ge, R = SiMe3, SiMetBu2) were studied by DFT calculations. Six pyramidal structures are suggested for their potential synthetic realization.http://dx.doi.org/10.1155/2019/3659287
spellingShingle Olga A. Gapurenko
Vladimir Ya. Lee
Ruslan M. Minyaev
Vladimir I. Minkin
Theoretical Prediction for Synthetic Realization: Pyramidal Systems ClE[E′4R4] (E = B–Ga, E′ = C–Ge, R = SiMe3, SiMetBu2): A DFT Study
Heteroatom Chemistry
title Theoretical Prediction for Synthetic Realization: Pyramidal Systems ClE[E′4R4] (E = B–Ga, E′ = C–Ge, R = SiMe3, SiMetBu2): A DFT Study
title_full Theoretical Prediction for Synthetic Realization: Pyramidal Systems ClE[E′4R4] (E = B–Ga, E′ = C–Ge, R = SiMe3, SiMetBu2): A DFT Study
title_fullStr Theoretical Prediction for Synthetic Realization: Pyramidal Systems ClE[E′4R4] (E = B–Ga, E′ = C–Ge, R = SiMe3, SiMetBu2): A DFT Study
title_full_unstemmed Theoretical Prediction for Synthetic Realization: Pyramidal Systems ClE[E′4R4] (E = B–Ga, E′ = C–Ge, R = SiMe3, SiMetBu2): A DFT Study
title_short Theoretical Prediction for Synthetic Realization: Pyramidal Systems ClE[E′4R4] (E = B–Ga, E′ = C–Ge, R = SiMe3, SiMetBu2): A DFT Study
title_sort theoretical prediction for synthetic realization pyramidal systems cle e 4r4 e b ga e c ge r sime3 simetbu2 a dft study
url http://dx.doi.org/10.1155/2019/3659287
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