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Steric Switching From Photochemical to Thermal N(2) Splitting: A Computational Analysis of the Isomerization Reaction {(Cp(*))(Am)Mo}(2)(μ-η(1):η(1)-N(2)) → {(Cp(*))(Am)Mo}(2)(μ-N)(2)

A μ-η(1):η(1)-N(2)-bridged Mo dimer, {(η(5)-C(5)Me(5))[N(Et)C(Ph)N(Et)]Mo}(2)(μ-N(2)), cleaves dinitrogen thermally resulting in a crystallographically characterized bis-μ-N-bridged dimer, {(η(5)-C(5)Me(5))[N(Et)C(Ph)N(Et)]Mo}(2)(μ-N)(2). A structurally related Mo dimer with a bulkier amidinate liga...

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Autor principal: Krewald, Vera
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6535493/
https://www.ncbi.nlm.nih.gov/pubmed/31165063
http://dx.doi.org/10.3389/fchem.2019.00352
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author Krewald, Vera
author_facet Krewald, Vera
author_sort Krewald, Vera
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description A μ-η(1):η(1)-N(2)-bridged Mo dimer, {(η(5)-C(5)Me(5))[N(Et)C(Ph)N(Et)]Mo}(2)(μ-N(2)), cleaves dinitrogen thermally resulting in a crystallographically characterized bis-μ-N-bridged dimer, {(η(5)-C(5)Me(5))[N(Et)C(Ph)N(Et)]Mo}(2)(μ-N)(2). A structurally related Mo dimer with a bulkier amidinate ligand, ([N((i)Pr)C(Me)N((i)Pr)]), is only capable of photochemical dinitrogen activation. These opposing reactivities were rationalized as steric switching between the thermally and photochemically active species. A computational analysis of the geometric and electronic structures of intermediates along the isomerization pathway from Mo(2)(μ-η(1):η(1)-N(2)) to Mo(2)(μ-η(2):η(1)-N(2)) and Mo(2)(μ-η(2):η(2)-N(2)), and finally Mo(2)(μ-N)(2), is presented here. The extent to which dispersion affects the thermodynamics of the isomers is evaluated, and it is found that dispersion interactions play a significant role in stabilizing the product and making the reaction exergonic. The concept of steric switching is further explored with theoretical models with sterically even less demanding ligands, indicating that systematic ligand modifications could be used to rationally design the N(2) activation energy landscape. An analysis of electronic excitations in the computed UV-vis spectra of the two complexes shows that a particular type of asymmetric excitations is only present in the photoactive complex.
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spelling pubmed-65354932019-06-04 Steric Switching From Photochemical to Thermal N(2) Splitting: A Computational Analysis of the Isomerization Reaction {(Cp(*))(Am)Mo}(2)(μ-η(1):η(1)-N(2)) → {(Cp(*))(Am)Mo}(2)(μ-N)(2) Krewald, Vera Front Chem Chemistry A μ-η(1):η(1)-N(2)-bridged Mo dimer, {(η(5)-C(5)Me(5))[N(Et)C(Ph)N(Et)]Mo}(2)(μ-N(2)), cleaves dinitrogen thermally resulting in a crystallographically characterized bis-μ-N-bridged dimer, {(η(5)-C(5)Me(5))[N(Et)C(Ph)N(Et)]Mo}(2)(μ-N)(2). A structurally related Mo dimer with a bulkier amidinate ligand, ([N((i)Pr)C(Me)N((i)Pr)]), is only capable of photochemical dinitrogen activation. These opposing reactivities were rationalized as steric switching between the thermally and photochemically active species. A computational analysis of the geometric and electronic structures of intermediates along the isomerization pathway from Mo(2)(μ-η(1):η(1)-N(2)) to Mo(2)(μ-η(2):η(1)-N(2)) and Mo(2)(μ-η(2):η(2)-N(2)), and finally Mo(2)(μ-N)(2), is presented here. The extent to which dispersion affects the thermodynamics of the isomers is evaluated, and it is found that dispersion interactions play a significant role in stabilizing the product and making the reaction exergonic. The concept of steric switching is further explored with theoretical models with sterically even less demanding ligands, indicating that systematic ligand modifications could be used to rationally design the N(2) activation energy landscape. An analysis of electronic excitations in the computed UV-vis spectra of the two complexes shows that a particular type of asymmetric excitations is only present in the photoactive complex. Frontiers Media S.A. 2019-05-16 /pmc/articles/PMC6535493/ /pubmed/31165063 http://dx.doi.org/10.3389/fchem.2019.00352 Text en Copyright © 2019 Krewald. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Krewald, Vera
Steric Switching From Photochemical to Thermal N(2) Splitting: A Computational Analysis of the Isomerization Reaction {(Cp(*))(Am)Mo}(2)(μ-η(1):η(1)-N(2)) → {(Cp(*))(Am)Mo}(2)(μ-N)(2)
title Steric Switching From Photochemical to Thermal N(2) Splitting: A Computational Analysis of the Isomerization Reaction {(Cp(*))(Am)Mo}(2)(μ-η(1):η(1)-N(2)) → {(Cp(*))(Am)Mo}(2)(μ-N)(2)
title_full Steric Switching From Photochemical to Thermal N(2) Splitting: A Computational Analysis of the Isomerization Reaction {(Cp(*))(Am)Mo}(2)(μ-η(1):η(1)-N(2)) → {(Cp(*))(Am)Mo}(2)(μ-N)(2)
title_fullStr Steric Switching From Photochemical to Thermal N(2) Splitting: A Computational Analysis of the Isomerization Reaction {(Cp(*))(Am)Mo}(2)(μ-η(1):η(1)-N(2)) → {(Cp(*))(Am)Mo}(2)(μ-N)(2)
title_full_unstemmed Steric Switching From Photochemical to Thermal N(2) Splitting: A Computational Analysis of the Isomerization Reaction {(Cp(*))(Am)Mo}(2)(μ-η(1):η(1)-N(2)) → {(Cp(*))(Am)Mo}(2)(μ-N)(2)
title_short Steric Switching From Photochemical to Thermal N(2) Splitting: A Computational Analysis of the Isomerization Reaction {(Cp(*))(Am)Mo}(2)(μ-η(1):η(1)-N(2)) → {(Cp(*))(Am)Mo}(2)(μ-N)(2)
title_sort steric switching from photochemical to thermal n(2) splitting: a computational analysis of the isomerization reaction {(cp(*))(am)mo}(2)(μ-η(1):η(1)-n(2)) → {(cp(*))(am)mo}(2)(μ-n)(2)
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6535493/
https://www.ncbi.nlm.nih.gov/pubmed/31165063
http://dx.doi.org/10.3389/fchem.2019.00352
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