Combined Multistate and Kohn-Sham Density Functional Theory Studies of the Elusive Mechanism of N-Dealkylation of N,N-Dimethylanilines Mediated by the Biomimetic Nonheme Oxidant FeIV(O)(N4Py)(ClO4)2
The oxidative C-H bond activation mediated by heme and nonheme enzymes and related biomimetics is one of the most interesting processes in bioinorganic and oxidative chemistry. However, the mechanisms of these reactions are still elusive and controversy due to the involvement of highly reactive meta...
Main Authors: | , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Frontiers Media S.A.
2018-09-01
|
Series: | Frontiers in Chemistry |
Subjects: | |
Online Access: | https://www.frontiersin.org/article/10.3389/fchem.2018.00406/full |
id |
doaj-13efd317e53f401dafc45de9c41df254 |
---|---|
record_format |
Article |
spelling |
doaj-13efd317e53f401dafc45de9c41df2542020-11-25T00:32:05ZengFrontiers Media S.A.Frontiers in Chemistry2296-26462018-09-01610.3389/fchem.2018.00406413403Combined Multistate and Kohn-Sham Density Functional Theory Studies of the Elusive Mechanism of N-Dealkylation of N,N-Dimethylanilines Mediated by the Biomimetic Nonheme Oxidant FeIV(O)(N4Py)(ClO4)2Lili Yang0Xin Chen1Zexing Qu2Jiali Gao3Jiali Gao4Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun, ChinaLaboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun, ChinaLaboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun, ChinaLaboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun, ChinaDepartment of Chemistry, University of Minnesota, Minneapolis, MN, United StatesThe oxidative C-H bond activation mediated by heme and nonheme enzymes and related biomimetics is one of the most interesting processes in bioinorganic and oxidative chemistry. However, the mechanisms of these reactions are still elusive and controversy due to the involvement of highly reactive metal-oxo intermediates with multiple spin states, despite extensive experimental efforts, especially for the N-dealkylation of N,N-dialkyalinines. In this work, we employed multistate density functional theory (MSDFT) and the Kohn-Sham DFT to investigate the mechanism of N-demethylation of N,N-dimethyalinines oxidized by the reaction intermediate FeIV(O)(N4Py)(ClO4)2. The Kohn-Sham DFT study demonstrated that the reaction proceeds via a rate-limiting hydrogen atom transfer (HAT) step and a subsequent barrier-free oxygen rebound step to form the carbinol product. The MSDFT investigation on the first C-H activation further showed that this step is an initial hydrogen atom abstraction that is highly correlated between CEPT and HAT, i.e., both CEPT and HAT processes make significant contributions to the mechanism before reaching the diabatic crossing point, then the valence bond character of the adiabatic ground state is switched to the CEPT product configuration. The findings from this work may be applicable to other hydrogen abstraction process.https://www.frontiersin.org/article/10.3389/fchem.2018.00406/fullC-H activationN-dealkylationmechanismMSDFTHATCEPT |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lili Yang Xin Chen Zexing Qu Jiali Gao Jiali Gao |
spellingShingle |
Lili Yang Xin Chen Zexing Qu Jiali Gao Jiali Gao Combined Multistate and Kohn-Sham Density Functional Theory Studies of the Elusive Mechanism of N-Dealkylation of N,N-Dimethylanilines Mediated by the Biomimetic Nonheme Oxidant FeIV(O)(N4Py)(ClO4)2 Frontiers in Chemistry C-H activation N-dealkylation mechanism MSDFT HAT CEPT |
author_facet |
Lili Yang Xin Chen Zexing Qu Jiali Gao Jiali Gao |
author_sort |
Lili Yang |
title |
Combined Multistate and Kohn-Sham Density Functional Theory Studies of the Elusive Mechanism of N-Dealkylation of N,N-Dimethylanilines Mediated by the Biomimetic Nonheme Oxidant FeIV(O)(N4Py)(ClO4)2 |
title_short |
Combined Multistate and Kohn-Sham Density Functional Theory Studies of the Elusive Mechanism of N-Dealkylation of N,N-Dimethylanilines Mediated by the Biomimetic Nonheme Oxidant FeIV(O)(N4Py)(ClO4)2 |
title_full |
Combined Multistate and Kohn-Sham Density Functional Theory Studies of the Elusive Mechanism of N-Dealkylation of N,N-Dimethylanilines Mediated by the Biomimetic Nonheme Oxidant FeIV(O)(N4Py)(ClO4)2 |
title_fullStr |
Combined Multistate and Kohn-Sham Density Functional Theory Studies of the Elusive Mechanism of N-Dealkylation of N,N-Dimethylanilines Mediated by the Biomimetic Nonheme Oxidant FeIV(O)(N4Py)(ClO4)2 |
title_full_unstemmed |
Combined Multistate and Kohn-Sham Density Functional Theory Studies of the Elusive Mechanism of N-Dealkylation of N,N-Dimethylanilines Mediated by the Biomimetic Nonheme Oxidant FeIV(O)(N4Py)(ClO4)2 |
title_sort |
combined multistate and kohn-sham density functional theory studies of the elusive mechanism of n-dealkylation of n,n-dimethylanilines mediated by the biomimetic nonheme oxidant feiv(o)(n4py)(clo4)2 |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Chemistry |
issn |
2296-2646 |
publishDate |
2018-09-01 |
description |
The oxidative C-H bond activation mediated by heme and nonheme enzymes and related biomimetics is one of the most interesting processes in bioinorganic and oxidative chemistry. However, the mechanisms of these reactions are still elusive and controversy due to the involvement of highly reactive metal-oxo intermediates with multiple spin states, despite extensive experimental efforts, especially for the N-dealkylation of N,N-dialkyalinines. In this work, we employed multistate density functional theory (MSDFT) and the Kohn-Sham DFT to investigate the mechanism of N-demethylation of N,N-dimethyalinines oxidized by the reaction intermediate FeIV(O)(N4Py)(ClO4)2. The Kohn-Sham DFT study demonstrated that the reaction proceeds via a rate-limiting hydrogen atom transfer (HAT) step and a subsequent barrier-free oxygen rebound step to form the carbinol product. The MSDFT investigation on the first C-H activation further showed that this step is an initial hydrogen atom abstraction that is highly correlated between CEPT and HAT, i.e., both CEPT and HAT processes make significant contributions to the mechanism before reaching the diabatic crossing point, then the valence bond character of the adiabatic ground state is switched to the CEPT product configuration. The findings from this work may be applicable to other hydrogen abstraction process. |
topic |
C-H activation N-dealkylation mechanism MSDFT HAT CEPT |
url |
https://www.frontiersin.org/article/10.3389/fchem.2018.00406/full |
work_keys_str_mv |
AT liliyang combinedmultistateandkohnshamdensityfunctionaltheorystudiesoftheelusivemechanismofndealkylationofnndimethylanilinesmediatedbythebiomimeticnonhemeoxidantfeivon4pyclo42 AT xinchen combinedmultistateandkohnshamdensityfunctionaltheorystudiesoftheelusivemechanismofndealkylationofnndimethylanilinesmediatedbythebiomimeticnonhemeoxidantfeivon4pyclo42 AT zexingqu combinedmultistateandkohnshamdensityfunctionaltheorystudiesoftheelusivemechanismofndealkylationofnndimethylanilinesmediatedbythebiomimeticnonhemeoxidantfeivon4pyclo42 AT jialigao combinedmultistateandkohnshamdensityfunctionaltheorystudiesoftheelusivemechanismofndealkylationofnndimethylanilinesmediatedbythebiomimeticnonhemeoxidantfeivon4pyclo42 AT jialigao combinedmultistateandkohnshamdensityfunctionaltheorystudiesoftheelusivemechanismofndealkylationofnndimethylanilinesmediatedbythebiomimeticnonhemeoxidantfeivon4pyclo42 |
_version_ |
1725320895002574848 |