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Stabilities, Electronic Structures, and Bonding Properties of Iron Complexes (E(1)E(2))Fe(CO)(2)(CNAr(Tripp2))(2) (E(1)E(2)=BF, CO, N(2), CN(−), or NO(+))

The coordination of 10‐electron diatomic ligands (BF, CO N(2)) to iron complexes Fe(CO)(2)(CNAr(Tripp2))(2) [Ar(Tripp2)=2,6‐(2,4,6‐(iso‐propyl)(3)C(6)H(2))(2)C(6)H(3)] have been realized in experiments very recently (Science, 2019, 363, 1203–1205). Herein, the stability, electronic structures, and b...

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Autores principales: Pei, Gerui, Zhao, Pei, Xu, Song, Zhao, Xintian, Kong, Chuncai, Yang, Zhimao, Ehara, Masahiro, Yang, Tao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7673221/
https://www.ncbi.nlm.nih.gov/pubmed/33240746
http://dx.doi.org/10.1002/open.202000248
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author Pei, Gerui
Zhao, Pei
Xu, Song
Zhao, Xintian
Kong, Chuncai
Yang, Zhimao
Ehara, Masahiro
Yang, Tao
author_facet Pei, Gerui
Zhao, Pei
Xu, Song
Zhao, Xintian
Kong, Chuncai
Yang, Zhimao
Ehara, Masahiro
Yang, Tao
author_sort Pei, Gerui
collection PubMed
description The coordination of 10‐electron diatomic ligands (BF, CO N(2)) to iron complexes Fe(CO)(2)(CNAr(Tripp2))(2) [Ar(Tripp2)=2,6‐(2,4,6‐(iso‐propyl)(3)C(6)H(2))(2)C(6)H(3)] have been realized in experiments very recently (Science, 2019, 363, 1203–1205). Herein, the stability, electronic structures, and bonding properties of (E(1)E(2))Fe‐(CO)(2)(CNAr(Tripp2))(2) (E(1)E(2)=BF, CO, N(2), CN(−), NO(+)) were studied using density functional (DFT) calculations. The ground state of all those molecules is singlet and the calculated geometries are in excellent agreement with the experimental values. The natural bond orbital analysis revealed that Fe is negatively charged while E(1) possesses positive charges. By employing the energy decomposition analysis, the bonding nature of the E(2)E(1)–Fe(CO)(2)(CNAr(Tripp2))(2) bond was disclosed to be the classic dative bond E(2)E(1)→Fe(CO)(2)(CNAr(Tripp2))(2) rather than the electron‐sharing double bond. More interestingly, the bonding strength between BF and Fe(CO)(2)(CNAr(Tripp2))(2) is much stronger than that between CO (or N(2)) and Fe(CO)(2)(CNAr(Tripp2))(2), which is ascribed to the better σ‐donation and π back‐donations. However, the orbital interactions in CN(−)→Fe(CO)(2)(CNAr(Tripp2))(2) and NO(+)→Fe(CO)(2)(CNAr(Tripp2))(2) mainly come from σ‐donation and π back‐donation, respectively. The different contributions from σ donation and π donation for different ligands can be well explained by using the energy levels of E(1)E(2) and Fe(CO)(2)(CNAr(Tripp2))(2) fragments.
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spelling pubmed-76732212020-11-24 Stabilities, Electronic Structures, and Bonding Properties of Iron Complexes (E(1)E(2))Fe(CO)(2)(CNAr(Tripp2))(2) (E(1)E(2)=BF, CO, N(2), CN(−), or NO(+)) Pei, Gerui Zhao, Pei Xu, Song Zhao, Xintian Kong, Chuncai Yang, Zhimao Ehara, Masahiro Yang, Tao ChemistryOpen Full Papers The coordination of 10‐electron diatomic ligands (BF, CO N(2)) to iron complexes Fe(CO)(2)(CNAr(Tripp2))(2) [Ar(Tripp2)=2,6‐(2,4,6‐(iso‐propyl)(3)C(6)H(2))(2)C(6)H(3)] have been realized in experiments very recently (Science, 2019, 363, 1203–1205). Herein, the stability, electronic structures, and bonding properties of (E(1)E(2))Fe‐(CO)(2)(CNAr(Tripp2))(2) (E(1)E(2)=BF, CO, N(2), CN(−), NO(+)) were studied using density functional (DFT) calculations. The ground state of all those molecules is singlet and the calculated geometries are in excellent agreement with the experimental values. The natural bond orbital analysis revealed that Fe is negatively charged while E(1) possesses positive charges. By employing the energy decomposition analysis, the bonding nature of the E(2)E(1)–Fe(CO)(2)(CNAr(Tripp2))(2) bond was disclosed to be the classic dative bond E(2)E(1)→Fe(CO)(2)(CNAr(Tripp2))(2) rather than the electron‐sharing double bond. More interestingly, the bonding strength between BF and Fe(CO)(2)(CNAr(Tripp2))(2) is much stronger than that between CO (or N(2)) and Fe(CO)(2)(CNAr(Tripp2))(2), which is ascribed to the better σ‐donation and π back‐donations. However, the orbital interactions in CN(−)→Fe(CO)(2)(CNAr(Tripp2))(2) and NO(+)→Fe(CO)(2)(CNAr(Tripp2))(2) mainly come from σ‐donation and π back‐donation, respectively. The different contributions from σ donation and π donation for different ligands can be well explained by using the energy levels of E(1)E(2) and Fe(CO)(2)(CNAr(Tripp2))(2) fragments. John Wiley and Sons Inc. 2020-11-18 /pmc/articles/PMC7673221/ /pubmed/33240746 http://dx.doi.org/10.1002/open.202000248 Text en © 2020 The Authors. Published by Wiley-VCH GmbH This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Full Papers
Pei, Gerui
Zhao, Pei
Xu, Song
Zhao, Xintian
Kong, Chuncai
Yang, Zhimao
Ehara, Masahiro
Yang, Tao
Stabilities, Electronic Structures, and Bonding Properties of Iron Complexes (E(1)E(2))Fe(CO)(2)(CNAr(Tripp2))(2) (E(1)E(2)=BF, CO, N(2), CN(−), or NO(+))
title Stabilities, Electronic Structures, and Bonding Properties of Iron Complexes (E(1)E(2))Fe(CO)(2)(CNAr(Tripp2))(2) (E(1)E(2)=BF, CO, N(2), CN(−), or NO(+))
title_full Stabilities, Electronic Structures, and Bonding Properties of Iron Complexes (E(1)E(2))Fe(CO)(2)(CNAr(Tripp2))(2) (E(1)E(2)=BF, CO, N(2), CN(−), or NO(+))
title_fullStr Stabilities, Electronic Structures, and Bonding Properties of Iron Complexes (E(1)E(2))Fe(CO)(2)(CNAr(Tripp2))(2) (E(1)E(2)=BF, CO, N(2), CN(−), or NO(+))
title_full_unstemmed Stabilities, Electronic Structures, and Bonding Properties of Iron Complexes (E(1)E(2))Fe(CO)(2)(CNAr(Tripp2))(2) (E(1)E(2)=BF, CO, N(2), CN(−), or NO(+))
title_short Stabilities, Electronic Structures, and Bonding Properties of Iron Complexes (E(1)E(2))Fe(CO)(2)(CNAr(Tripp2))(2) (E(1)E(2)=BF, CO, N(2), CN(−), or NO(+))
title_sort stabilities, electronic structures, and bonding properties of iron complexes (e(1)e(2))fe(co)(2)(cnar(tripp2))(2) (e(1)e(2)=bf, co, n(2), cn(−), or no(+))
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7673221/
https://www.ncbi.nlm.nih.gov/pubmed/33240746
http://dx.doi.org/10.1002/open.202000248
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