Theoretical Study of The Reaction of Ketene with Methanimine Using DFT Method

The Density Functional Theory (DFT) method was used to investigate the stepwise mechanism of the [2+2] cycloaddition (22CA) reaction of ketene with methanimine at the B3LYP/6-311++G(d,p) level of theory. Two modes of attack between reactants were investigated, yielding Azetidin-2-one from path...

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Main Author: Haydar Mohammad Salim
Format: Article
Language:English
Published: Salahaddin University-Erbil 2021-08-01
Series:Zanco Journal of Pure and Applied Sciences
Subjects:
Online Access:https://zancojournals.su.edu.krd/index.php/JPAS/article/view/4005
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spelling doaj-57a90147095f4bc89a36019e3ce43f852021-08-29T06:15:34ZengSalahaddin University-ErbilZanco Journal of Pure and Applied Sciences2218-02302412-39862021-08-0133411010.21271/ZJPAS.33.4.1Theoretical Study of The Reaction of Ketene with Methanimine Using DFT MethodHaydar Mohammad Salim0Department of Chemistry, Faculty of Science, University of Zakho, Duhok 42001, Kurdistan Region, Iraq The Density Functional Theory (DFT) method was used to investigate the stepwise mechanism of the [2+2] cycloaddition (22CA) reaction of ketene with methanimine at the B3LYP/6-311++G(d,p) level of theory. Two modes of attack between reactants were investigated, yielding Azetidin-2-one from path1 and Azetidin-2-one from path2 as two possible products passing through two different transition states. The geometry of transition states and products was analysed. The study of stationary points and energetic parameters shows that the reaction mechanism is stepwise and that Azetidin-2-one P1 is thermodynamically and kinetically more favoured than Azetidin-3-one P2. The analysis of the frontier molecular HOMO and LUMO orbitals shows that the Azetidin-2-one P1 is more stable due to its higher energy gab. The global electronic flux from the strong nucleophilic ketene R1 to the methanimine R2 is predicted using conceptual density functional theory (CDFT) indices. Reactant’s electrophilic and nucleophilic Fukui functions were also investigated.https://zancojournals.su.edu.krd/index.php/JPAS/article/view/4005stepwise mechanism; [2 2] cycloaddition; dft; cdft; fukui functions. abstract
collection DOAJ
language English
format Article
sources DOAJ
author Haydar Mohammad Salim
spellingShingle Haydar Mohammad Salim
Theoretical Study of The Reaction of Ketene with Methanimine Using DFT Method
Zanco Journal of Pure and Applied Sciences
stepwise mechanism; [2 2] cycloaddition; dft; cdft; fukui functions. abstract
author_facet Haydar Mohammad Salim
author_sort Haydar Mohammad Salim
title Theoretical Study of The Reaction of Ketene with Methanimine Using DFT Method
title_short Theoretical Study of The Reaction of Ketene with Methanimine Using DFT Method
title_full Theoretical Study of The Reaction of Ketene with Methanimine Using DFT Method
title_fullStr Theoretical Study of The Reaction of Ketene with Methanimine Using DFT Method
title_full_unstemmed Theoretical Study of The Reaction of Ketene with Methanimine Using DFT Method
title_sort theoretical study of the reaction of ketene with methanimine using dft method
publisher Salahaddin University-Erbil
series Zanco Journal of Pure and Applied Sciences
issn 2218-0230
2412-3986
publishDate 2021-08-01
description The Density Functional Theory (DFT) method was used to investigate the stepwise mechanism of the [2+2] cycloaddition (22CA) reaction of ketene with methanimine at the B3LYP/6-311++G(d,p) level of theory. Two modes of attack between reactants were investigated, yielding Azetidin-2-one from path1 and Azetidin-2-one from path2 as two possible products passing through two different transition states. The geometry of transition states and products was analysed. The study of stationary points and energetic parameters shows that the reaction mechanism is stepwise and that Azetidin-2-one P1 is thermodynamically and kinetically more favoured than Azetidin-3-one P2. The analysis of the frontier molecular HOMO and LUMO orbitals shows that the Azetidin-2-one P1 is more stable due to its higher energy gab. The global electronic flux from the strong nucleophilic ketene R1 to the methanimine R2 is predicted using conceptual density functional theory (CDFT) indices. Reactant’s electrophilic and nucleophilic Fukui functions were also investigated.
topic stepwise mechanism; [2 2] cycloaddition; dft; cdft; fukui functions. abstract
url https://zancojournals.su.edu.krd/index.php/JPAS/article/view/4005
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