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Dinuclear Nickel Complexes of Thiolate-Functionalized Carbene Ligands and Their Electrochemical Properties
[Image: see text] Four dimeric nickel(II) complexes [Ni(2)Cl(2)(BnC(2)S)(2)] [1], [Ni(2)Cl(2)(BnC(3)S)(2)] [2], [Ni(2)(PyC(2)S)(2)]Br(2) [3]Br(2), and [Ni(2)(PyC(3)S)(2)]Br(2) [4]Br(2) of four different thiolate-functionalized N-heterocyclic carbene (NHC) ligands were synthesized, and their structur...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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American Chemical Society
2017
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5850092/ https://www.ncbi.nlm.nih.gov/pubmed/29551851 http://dx.doi.org/10.1021/acs.organomet.7b00576 |
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author | Luo, Siyuan Siegler, Maxime A. Bouwman, Elisabeth |
author_facet | Luo, Siyuan Siegler, Maxime A. Bouwman, Elisabeth |
author_sort | Luo, Siyuan |
collection | PubMed |
description | [Image: see text] Four dimeric nickel(II) complexes [Ni(2)Cl(2)(BnC(2)S)(2)] [1], [Ni(2)Cl(2)(BnC(3)S)(2)] [2], [Ni(2)(PyC(2)S)(2)]Br(2) [3]Br(2), and [Ni(2)(PyC(3)S)(2)]Br(2) [4]Br(2) of four different thiolate-functionalized N-heterocyclic carbene (NHC) ligands were synthesized, and their structures have been determined by single-crystal X-ray crystallography. The four ligands differ by the alkyl chain length between the thiolate group and the benzimidazole nitrogen (two −C(2)– or three −C(3)– carbon atoms) and the second functionality at the NHC being a benzyl (Bn) or a pyridylmethyl (Py) group. The nickel(II) ions are coordinated to the NHC carbon atom and the pendent thiolate group, which bridges to the second nickel(II) ion creating the dinuclear structure. Additionally, in compounds [1] and [2], the fourth coordination position of the square-planar Ni(II) centers is occupied by the halide ions, whereas in [3](2+) and [4](2+), the additional pendant pyridylmethyl groups complete the coordination spheres of the nickel ions. The electrochemical properties of the four complexes were studied using cyclic voltammetry and controlled-potential coulometry methods. The thiolate-functionalized carbene complexes [1] and [2] appear to be poor electrocatalysts for the hydrogen evolution reaction; the complexes [3]Br(2) and [4]Br(2), bearing an extra pyridylmethyl group, show higher catalytic activity in proton reduction, indicating that the pyridine group plays an important role in the catalytic cycle. |
format | Online Article Text |
id | pubmed-5850092 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-58500922018-03-15 Dinuclear Nickel Complexes of Thiolate-Functionalized Carbene Ligands and Their Electrochemical Properties Luo, Siyuan Siegler, Maxime A. Bouwman, Elisabeth Organometallics [Image: see text] Four dimeric nickel(II) complexes [Ni(2)Cl(2)(BnC(2)S)(2)] [1], [Ni(2)Cl(2)(BnC(3)S)(2)] [2], [Ni(2)(PyC(2)S)(2)]Br(2) [3]Br(2), and [Ni(2)(PyC(3)S)(2)]Br(2) [4]Br(2) of four different thiolate-functionalized N-heterocyclic carbene (NHC) ligands were synthesized, and their structures have been determined by single-crystal X-ray crystallography. The four ligands differ by the alkyl chain length between the thiolate group and the benzimidazole nitrogen (two −C(2)– or three −C(3)– carbon atoms) and the second functionality at the NHC being a benzyl (Bn) or a pyridylmethyl (Py) group. The nickel(II) ions are coordinated to the NHC carbon atom and the pendent thiolate group, which bridges to the second nickel(II) ion creating the dinuclear structure. Additionally, in compounds [1] and [2], the fourth coordination position of the square-planar Ni(II) centers is occupied by the halide ions, whereas in [3](2+) and [4](2+), the additional pendant pyridylmethyl groups complete the coordination spheres of the nickel ions. The electrochemical properties of the four complexes were studied using cyclic voltammetry and controlled-potential coulometry methods. The thiolate-functionalized carbene complexes [1] and [2] appear to be poor electrocatalysts for the hydrogen evolution reaction; the complexes [3]Br(2) and [4]Br(2), bearing an extra pyridylmethyl group, show higher catalytic activity in proton reduction, indicating that the pyridine group plays an important role in the catalytic cycle. American Chemical Society 2017-10-04 2018-03-12 /pmc/articles/PMC5850092/ /pubmed/29551851 http://dx.doi.org/10.1021/acs.organomet.7b00576 Text en Copyright © 2017 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes. |
spellingShingle | Luo, Siyuan Siegler, Maxime A. Bouwman, Elisabeth Dinuclear Nickel Complexes of Thiolate-Functionalized Carbene Ligands and Their Electrochemical Properties |
title | Dinuclear Nickel Complexes of Thiolate-Functionalized
Carbene Ligands and Their Electrochemical Properties |
title_full | Dinuclear Nickel Complexes of Thiolate-Functionalized
Carbene Ligands and Their Electrochemical Properties |
title_fullStr | Dinuclear Nickel Complexes of Thiolate-Functionalized
Carbene Ligands and Their Electrochemical Properties |
title_full_unstemmed | Dinuclear Nickel Complexes of Thiolate-Functionalized
Carbene Ligands and Their Electrochemical Properties |
title_short | Dinuclear Nickel Complexes of Thiolate-Functionalized
Carbene Ligands and Their Electrochemical Properties |
title_sort | dinuclear nickel complexes of thiolate-functionalized
carbene ligands and their electrochemical properties |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5850092/ https://www.ncbi.nlm.nih.gov/pubmed/29551851 http://dx.doi.org/10.1021/acs.organomet.7b00576 |
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