Understanding Factors that Control the Structural (Dis)Assembly of Sulphur-Bridged Bimetallic Sites

Bimetallic structures of the general type [M<sub>2</sub>(&#181;-S)<sub>2</sub>] are omnipresent in nature, for biological function [M<sub>2</sub>(&#181;-S)<sub>2</sub>] sites interconvert between electronically distinct, but isostructural, form...

Full description

Bibliographic Details
Main Authors: Riyadh Alrefai, Henri Eggenweiler, Hartmut Schubert, Andreas Berkefeld
Format: Article
Language:English
Published: MDPI AG 2019-03-01
Series:Inorganics
Subjects:
Online Access:https://www.mdpi.com/2304-6740/7/4/42
id doaj-84ca945cff584f2c8270463861313f96
record_format Article
spelling doaj-84ca945cff584f2c8270463861313f962020-11-25T00:55:53ZengMDPI AGInorganics2304-67402019-03-01744210.3390/inorganics7040042inorganics7040042Understanding Factors that Control the Structural (Dis)Assembly of Sulphur-Bridged Bimetallic SitesRiyadh Alrefai0Henri Eggenweiler1Hartmut Schubert2Andreas Berkefeld3Institut für Anorganische Chemie, Eberhard Karls Universität Tübingen, Auf der Morgenstelle 18, 72076 Tübingen, GermanyInstitut für Anorganische Chemie, Eberhard Karls Universität Tübingen, Auf der Morgenstelle 18, 72076 Tübingen, GermanyInstitut für Anorganische Chemie, Eberhard Karls Universität Tübingen, Auf der Morgenstelle 18, 72076 Tübingen, GermanyInstitut für Anorganische Chemie, Eberhard Karls Universität Tübingen, Auf der Morgenstelle 18, 72076 Tübingen, GermanyBimetallic structures of the general type [M<sub>2</sub>(&#181;-S)<sub>2</sub>] are omnipresent in nature, for biological function [M<sub>2</sub>(&#181;-S)<sub>2</sub>] sites interconvert between electronically distinct, but isostructural, forms. Different from structure-function relationships, the current understanding of the mechanism of formation and persistence of [M<sub>2</sub>(&#181;-S)<sub>2</sub>] sites is poorly developed. This work reports on bimetallic model compounds of nickel that interconvert between functional structures [Ni<sub>2</sub>(&#181;-S)<sub>2</sub>]<sup>+/2+</sup> and isomeric congeners [2{&#954;-S&#8211;Ni}]<sup>2+/+</sup>, S = Aryl-S<sup>&#8722;</sup>, in which the nickel ions are geometrically independent. Interconversion of the two sets of structures was studied quantitatively by UV&#8211;VIS absorption spectroscopy and cyclic voltammetry. Assembly of the [Ni<sub>2</sub>(&#181;-S)<sub>2</sub>]<sup>+</sup> core from [2{&#954;-S&#8211;Ni}]<sup>+</sup> is thermodynamically and kinetically highly preferred over the disassembly of [Ni<sub>2</sub>(&#181;-S)<sub>2</sub>]<sup>2+</sup> into [2{&#954;-S&#8211;Ni}]<sup>2+</sup>. Labile Ni-&#951;<sup>2/3</sup>-bonding to aromatic &#960;-systems of the primary thiophenol ligand is critical for modeling (dis)assembly processes. A phosphine coligand mimics the role of anionic donors present in natural sites that saturate metal coordination. Three parameters have been identified as critical for structure formation and persistence. These are, first, the stereoelectronic properties of the metals ions, second, the steric demand of the coligand, and, third, the properties of the dative bond between nickel and coligand. The energies of transition states connecting functional and precursor forms have been found to depend on these parameters.https://www.mdpi.com/2304-6740/7/4/42bimetallic complexesnickelthiolate ligandskinetic studyelectrochemistrystructure-function relationship
collection DOAJ
language English
format Article
sources DOAJ
author Riyadh Alrefai
Henri Eggenweiler
Hartmut Schubert
Andreas Berkefeld
spellingShingle Riyadh Alrefai
Henri Eggenweiler
Hartmut Schubert
Andreas Berkefeld
Understanding Factors that Control the Structural (Dis)Assembly of Sulphur-Bridged Bimetallic Sites
Inorganics
bimetallic complexes
nickel
thiolate ligands
kinetic study
electrochemistry
structure-function relationship
author_facet Riyadh Alrefai
Henri Eggenweiler
Hartmut Schubert
Andreas Berkefeld
author_sort Riyadh Alrefai
title Understanding Factors that Control the Structural (Dis)Assembly of Sulphur-Bridged Bimetallic Sites
title_short Understanding Factors that Control the Structural (Dis)Assembly of Sulphur-Bridged Bimetallic Sites
title_full Understanding Factors that Control the Structural (Dis)Assembly of Sulphur-Bridged Bimetallic Sites
title_fullStr Understanding Factors that Control the Structural (Dis)Assembly of Sulphur-Bridged Bimetallic Sites
title_full_unstemmed Understanding Factors that Control the Structural (Dis)Assembly of Sulphur-Bridged Bimetallic Sites
title_sort understanding factors that control the structural (dis)assembly of sulphur-bridged bimetallic sites
publisher MDPI AG
series Inorganics
issn 2304-6740
publishDate 2019-03-01
description Bimetallic structures of the general type [M<sub>2</sub>(&#181;-S)<sub>2</sub>] are omnipresent in nature, for biological function [M<sub>2</sub>(&#181;-S)<sub>2</sub>] sites interconvert between electronically distinct, but isostructural, forms. Different from structure-function relationships, the current understanding of the mechanism of formation and persistence of [M<sub>2</sub>(&#181;-S)<sub>2</sub>] sites is poorly developed. This work reports on bimetallic model compounds of nickel that interconvert between functional structures [Ni<sub>2</sub>(&#181;-S)<sub>2</sub>]<sup>+/2+</sup> and isomeric congeners [2{&#954;-S&#8211;Ni}]<sup>2+/+</sup>, S = Aryl-S<sup>&#8722;</sup>, in which the nickel ions are geometrically independent. Interconversion of the two sets of structures was studied quantitatively by UV&#8211;VIS absorption spectroscopy and cyclic voltammetry. Assembly of the [Ni<sub>2</sub>(&#181;-S)<sub>2</sub>]<sup>+</sup> core from [2{&#954;-S&#8211;Ni}]<sup>+</sup> is thermodynamically and kinetically highly preferred over the disassembly of [Ni<sub>2</sub>(&#181;-S)<sub>2</sub>]<sup>2+</sup> into [2{&#954;-S&#8211;Ni}]<sup>2+</sup>. Labile Ni-&#951;<sup>2/3</sup>-bonding to aromatic &#960;-systems of the primary thiophenol ligand is critical for modeling (dis)assembly processes. A phosphine coligand mimics the role of anionic donors present in natural sites that saturate metal coordination. Three parameters have been identified as critical for structure formation and persistence. These are, first, the stereoelectronic properties of the metals ions, second, the steric demand of the coligand, and, third, the properties of the dative bond between nickel and coligand. The energies of transition states connecting functional and precursor forms have been found to depend on these parameters.
topic bimetallic complexes
nickel
thiolate ligands
kinetic study
electrochemistry
structure-function relationship
url https://www.mdpi.com/2304-6740/7/4/42
work_keys_str_mv AT riyadhalrefai understandingfactorsthatcontrolthestructuraldisassemblyofsulphurbridgedbimetallicsites
AT henrieggenweiler understandingfactorsthatcontrolthestructuraldisassemblyofsulphurbridgedbimetallicsites
AT hartmutschubert understandingfactorsthatcontrolthestructuraldisassemblyofsulphurbridgedbimetallicsites
AT andreasberkefeld understandingfactorsthatcontrolthestructuraldisassemblyofsulphurbridgedbimetallicsites
_version_ 1725229101457866752