Please use this identifier to cite or link to this item: https://hdl.handle.net/1959.11/64100
Title: Experimental and Computational Studies of Steric Factors in the Isomerization of Internal Alkynes within the Coordination Environment of Half‐Sandwich Metal Complexes
Contributor(s): Korb, Marcus (author); Ghazvini, Seyed M B H (author); Karton, Amir  (author)orcid ; Low, Paul J (author)
Publication Date: 2025-01
DOI: 10.1002/chem.202403700
Handle Link: https://hdl.handle.net/1959.11/64100
Abstract: 

The isomerization of internal alkynes Ar1C≡CAr2 within thecoordination environment of low-valent half-sandwich [Ru-(dppe)Cp]+ complexes via a 1,2-migration process affordsvinylidene species [Ru{=C=C(Ar1)Ar2}(dppe)Cp]+. The rearrangement reactions of symmetrically and asymmetrically substituted substrates featuring different electron-donating and -withdrawing groups and of varying steric bulk were modelled using density functional theory (DFT), and the conclusions supported by experimental observations. Examination of the reaction pathway and associated activation barriers reveal a high solvent dependency for the generation of the key intermediate species[Ru(dppe)Cp]+ from [RuCl(dppe)Cp] by halide dissociation in the presence of Na+ salts of weakly coordinating anions, with the lattice enthalpy of the NaCl by-product playing a critical role in the overall thermochemical balance of the reaction. Theactivation barriers associated with the reaction of [Ru-(dppe)Cp]+ with Ar1C≡CAr2, and the relative energies of the alkyne complexes [Ru(η2-Ar1C≡CAr2)(dppe)Cp]+, are sensitive tothe electron density of the alkyne and conformational changes associated with the ‘bend-back’ of the substrate. The latter differs by up to 66.1 kJ/mol, which in turn impacts the barrier height of the subsequent 1,2-migration step involved in the rearrangement process and ultimately the overall thermochemical nature of the complete reaction. The relative importance of these factors is evinced by the successful rearrangement of the very sterically congested 1(9-anthryl)-2(9-phenanthryl)acetylene into the fully characterized diaryl vinylidene complex, which was isolated in 89 % yield.

Publication Type: Journal Article
Grant Details: ARC/DE23010097
Source of Publication: Chemistry: A European Journal, 31(1), p. 1-14
Publisher: Wiley-VCH Verlag GmbH and Co KGaA
Place of Publication: Germany
ISSN: 1521-3765
0947-6539
Fields of Research (FoR) 2020: 3407 Theoretical and computational chemistry
Peer Reviewed: Yes
HERDC Category Description: C1 Refereed Article in a Scholarly Journal
Appears in Collections:Journal Article
School of Science and Technology

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