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Nickel(II)-Based Building Blocks with Schiff Base Derivatives: Experimental Insights and DFT Calculations †

We have recently reported a series of neutral square planar tridentate Schiff base (L) complexes of the general formula [(L)M(py)], showing relatively high first-order hyperpolarizabilities and NLO redox switching behavior. In the present study, new members of this family of compounds have been prep...

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Autores principales: Novoa, Néstor, Manzur, Carolina, Roisnel, Thierry, Kahlal, Samia, Saillard, Jean-Yves, Carrillo, David, Hamon, Jean-René
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8434171/
https://www.ncbi.nlm.nih.gov/pubmed/34500754
http://dx.doi.org/10.3390/molecules26175316
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author Novoa, Néstor
Manzur, Carolina
Roisnel, Thierry
Kahlal, Samia
Saillard, Jean-Yves
Carrillo, David
Hamon, Jean-René
author_facet Novoa, Néstor
Manzur, Carolina
Roisnel, Thierry
Kahlal, Samia
Saillard, Jean-Yves
Carrillo, David
Hamon, Jean-René
author_sort Novoa, Néstor
collection PubMed
description We have recently reported a series of neutral square planar tridentate Schiff base (L) complexes of the general formula [(L)M(py)], showing relatively high first-order hyperpolarizabilities and NLO redox switching behavior. In the present study, new members of this family of compounds have been prepared with the objective to investigate their potential as building blocks in the on-demand construction of D-π-A push–pull systems. Namely, ternary nickel(II) building blocks of general formula [(L(A/D))Ni(4-pyX)] (4–7), where L(A/D) stands for an electron accepting or donating dianionic O,N,O-tridentate Schiff base ligand resulting from the monocondensation of 2-aminophenol or its 4-substituted nitro derivative and β-diketones R-C(=O)CH(2)C(=O)CH(3) (R = methyl, anisyl, ferrocenyl), and 4-pyX is 4-iodopyridine or 4-ethynylpyridine, were synthesized and isolated in 60–78% yields. Unexpectedly, the Sonogashira cross-coupling reaction between the 4-iodopyridine derivative 6 and 4-ethynylpyridine led to the formation of the bis(4-pyridyl) acetylene bridged centrosymmetric dimer [{(L(D))Ni}(2)(µ(2)-py-C≡C-py)] (8). Complexes 4–8 were characterized by elemental analysis, FT-IR and NMR spectroscopy, single crystal X-ray diffraction and computational methods. In each compound, the four-coordinate Ni(II) metal ion adopts a square planar geometry with two nitrogen and two oxygen atoms as donors occupying trans positions. In 8, the Ni…Ni separation is of 13.62(14) Å. Experimental results were proved and explained theoretically exploiting Density Functional Theory calculations.
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spelling pubmed-84341712021-09-12 Nickel(II)-Based Building Blocks with Schiff Base Derivatives: Experimental Insights and DFT Calculations † Novoa, Néstor Manzur, Carolina Roisnel, Thierry Kahlal, Samia Saillard, Jean-Yves Carrillo, David Hamon, Jean-René Molecules Article We have recently reported a series of neutral square planar tridentate Schiff base (L) complexes of the general formula [(L)M(py)], showing relatively high first-order hyperpolarizabilities and NLO redox switching behavior. In the present study, new members of this family of compounds have been prepared with the objective to investigate their potential as building blocks in the on-demand construction of D-π-A push–pull systems. Namely, ternary nickel(II) building blocks of general formula [(L(A/D))Ni(4-pyX)] (4–7), where L(A/D) stands for an electron accepting or donating dianionic O,N,O-tridentate Schiff base ligand resulting from the monocondensation of 2-aminophenol or its 4-substituted nitro derivative and β-diketones R-C(=O)CH(2)C(=O)CH(3) (R = methyl, anisyl, ferrocenyl), and 4-pyX is 4-iodopyridine or 4-ethynylpyridine, were synthesized and isolated in 60–78% yields. Unexpectedly, the Sonogashira cross-coupling reaction between the 4-iodopyridine derivative 6 and 4-ethynylpyridine led to the formation of the bis(4-pyridyl) acetylene bridged centrosymmetric dimer [{(L(D))Ni}(2)(µ(2)-py-C≡C-py)] (8). Complexes 4–8 were characterized by elemental analysis, FT-IR and NMR spectroscopy, single crystal X-ray diffraction and computational methods. In each compound, the four-coordinate Ni(II) metal ion adopts a square planar geometry with two nitrogen and two oxygen atoms as donors occupying trans positions. In 8, the Ni…Ni separation is of 13.62(14) Å. Experimental results were proved and explained theoretically exploiting Density Functional Theory calculations. MDPI 2021-09-01 /pmc/articles/PMC8434171/ /pubmed/34500754 http://dx.doi.org/10.3390/molecules26175316 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Novoa, Néstor
Manzur, Carolina
Roisnel, Thierry
Kahlal, Samia
Saillard, Jean-Yves
Carrillo, David
Hamon, Jean-René
Nickel(II)-Based Building Blocks with Schiff Base Derivatives: Experimental Insights and DFT Calculations †
title Nickel(II)-Based Building Blocks with Schiff Base Derivatives: Experimental Insights and DFT Calculations †
title_full Nickel(II)-Based Building Blocks with Schiff Base Derivatives: Experimental Insights and DFT Calculations †
title_fullStr Nickel(II)-Based Building Blocks with Schiff Base Derivatives: Experimental Insights and DFT Calculations †
title_full_unstemmed Nickel(II)-Based Building Blocks with Schiff Base Derivatives: Experimental Insights and DFT Calculations †
title_short Nickel(II)-Based Building Blocks with Schiff Base Derivatives: Experimental Insights and DFT Calculations †
title_sort nickel(ii)-based building blocks with schiff base derivatives: experimental insights and dft calculations †
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8434171/
https://www.ncbi.nlm.nih.gov/pubmed/34500754
http://dx.doi.org/10.3390/molecules26175316
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