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Redox activity of a dissymmetric ligand bridging divalent ytter-bium and reactive nickel fragments†

The reaction of a reactive nickel dimethyl 1 bearing a redox-active, dissymmetric ligand, which is obtained by deprotonation of 2-pyrimidin-2-yl-1H-benzimidazole (Hbimpm) with a divalent lanthanide complex, Cp*(2)Yb(OEt(2)), affords an unprecedented, trimeric 2 with C(sp(3))–C(sp(3)) bond formation...

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Detalles Bibliográficos
Autores principales: Wang, Ding, Tricoire, Maxime, Cemortan, Valeriu, Moutet, Jules, Nocton, Grégory
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7116723/
https://www.ncbi.nlm.nih.gov/pubmed/33575034
http://dx.doi.org/10.1039/D0QI00952K
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author Wang, Ding
Tricoire, Maxime
Cemortan, Valeriu
Moutet, Jules
Nocton, Grégory
author_facet Wang, Ding
Tricoire, Maxime
Cemortan, Valeriu
Moutet, Jules
Nocton, Grégory
author_sort Wang, Ding
collection PubMed
description The reaction of a reactive nickel dimethyl 1 bearing a redox-active, dissymmetric ligand, which is obtained by deprotonation of 2-pyrimidin-2-yl-1H-benzimidazole (Hbimpm) with a divalent lanthanide complex, Cp*(2)Yb(OEt(2)), affords an unprecedented, trimeric 2 with C(sp(3))–C(sp(3)) bond formation between two ligands in an exo position. Meanwhile, the transient, dimeric species 3 can be isolated with the same ligand coupling fashion, however, with a drastic distorsion angle of the bimpm ligand and reactive NiMe(2) fragment, revealing the possible mechanism of this rearrangement. A much more stable dimeric congener, 5, with an exo ligand coupling, is synthesized in the presence of 18-crown-6, which captures the potassium counter ion. The C–C coupling formation between two bimpm ligands results from the effective electron transfer from divalent lanthanide fragments. Without the divalent lanthanide, the reductive coupling occurs on a different carbon of the ligand, nicely showing the modulation of the spin density induced by the presence of the lanthanide ion. The electronic structures of these complexes are investigated by magnetic study (SQUID), indicating a (2)F(7/2) ground state for each ytterbium in all the heterometallics. This work firstly reports ligand coupling reactivity in a redox-active, yet dissymmetric system with divalent organolanthanides, and the reactive nickel moiety can impact the intriguing transition towards a stable homoleptic, trinulear lanthanide species.
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spelling pubmed-71167232021-02-10 Redox activity of a dissymmetric ligand bridging divalent ytter-bium and reactive nickel fragments† Wang, Ding Tricoire, Maxime Cemortan, Valeriu Moutet, Jules Nocton, Grégory Inorg Chem Front Article The reaction of a reactive nickel dimethyl 1 bearing a redox-active, dissymmetric ligand, which is obtained by deprotonation of 2-pyrimidin-2-yl-1H-benzimidazole (Hbimpm) with a divalent lanthanide complex, Cp*(2)Yb(OEt(2)), affords an unprecedented, trimeric 2 with C(sp(3))–C(sp(3)) bond formation between two ligands in an exo position. Meanwhile, the transient, dimeric species 3 can be isolated with the same ligand coupling fashion, however, with a drastic distorsion angle of the bimpm ligand and reactive NiMe(2) fragment, revealing the possible mechanism of this rearrangement. A much more stable dimeric congener, 5, with an exo ligand coupling, is synthesized in the presence of 18-crown-6, which captures the potassium counter ion. The C–C coupling formation between two bimpm ligands results from the effective electron transfer from divalent lanthanide fragments. Without the divalent lanthanide, the reductive coupling occurs on a different carbon of the ligand, nicely showing the modulation of the spin density induced by the presence of the lanthanide ion. The electronic structures of these complexes are investigated by magnetic study (SQUID), indicating a (2)F(7/2) ground state for each ytterbium in all the heterometallics. This work firstly reports ligand coupling reactivity in a redox-active, yet dissymmetric system with divalent organolanthanides, and the reactive nickel moiety can impact the intriguing transition towards a stable homoleptic, trinulear lanthanide species. 2021-02-07 2020-11-20 /pmc/articles/PMC7116723/ /pubmed/33575034 http://dx.doi.org/10.1039/D0QI00952K Text en https://creativecommons.org/licenses/by-nc/3.0/ This article is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported Licence (https://creativecommons.org/licenses/by-nc/3.0/) .
spellingShingle Article
Wang, Ding
Tricoire, Maxime
Cemortan, Valeriu
Moutet, Jules
Nocton, Grégory
Redox activity of a dissymmetric ligand bridging divalent ytter-bium and reactive nickel fragments†
title Redox activity of a dissymmetric ligand bridging divalent ytter-bium and reactive nickel fragments†
title_full Redox activity of a dissymmetric ligand bridging divalent ytter-bium and reactive nickel fragments†
title_fullStr Redox activity of a dissymmetric ligand bridging divalent ytter-bium and reactive nickel fragments†
title_full_unstemmed Redox activity of a dissymmetric ligand bridging divalent ytter-bium and reactive nickel fragments†
title_short Redox activity of a dissymmetric ligand bridging divalent ytter-bium and reactive nickel fragments†
title_sort redox activity of a dissymmetric ligand bridging divalent ytter-bium and reactive nickel fragments†
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7116723/
https://www.ncbi.nlm.nih.gov/pubmed/33575034
http://dx.doi.org/10.1039/D0QI00952K
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