Issue 13, 2025

Facile Csp–Csp bond formation prompted by an electrophilic fluorinating reagent from bis(alkynyl) platinum complexes

Abstract

Electrophilic fluorination of bis(phenylacetylene)-platinum(II) complexes containing bipy or dppe as ancillary ligands at room temperature leads to Csp–Csp reductive elimination. In this regard, Selectfluor (N-chloromethyl-N′-fluorotriethylenediammonium bis(tetrafluoroborate)) was used in the reactions at room temperature, under air and without using dry solvents. Through experimental and computational studies, the influence of ancillary ligands on the Csp–Csp reductive elimination reaction was investigated. Based on density functional theory (DFT) calculations, the dissociation of acetonitrile (ACN) as a coordinated solvent is the rate-determining step. Therefore, in addition to the influence of the electronic properties of the ancillary ligands on the Csp–Csp coupling reaction, the energy required for the dissociation of acetonitrile from the Pt(IV) complexes significantly impacts the rate of the appearance of the experimentally observed products. The effect of various functional groups on the energy needed for the dissociation of acetonitrile and Csp–Csp reductive elimination was theoretically estimated. Our calculations show that the NMe2 group has a greater impact on the reduction of the energy requirement for the two steps necessary for observation of the Csp–Csp coupling reaction product, particularly in the dppe Pt(IV) complex.

Graphical abstract: Facile Csp–Csp bond formation prompted by an electrophilic fluorinating reagent from bis(alkynyl) platinum complexes

Supplementary files

Article information

Article type
Paper
Submitted
18 Jan 2025
Accepted
27 Feb 2025
First published
10 Mac 2025

Dalton Trans., 2025,54, 5568-5576

Facile Csp–Csp bond formation prompted by an electrophilic fluorinating reagent from bis(alkynyl) platinum complexes

S. Kochebaghi, S. Borji, M. Golbon Haghighi and E. Sarkissian, Dalton Trans., 2025, 54, 5568 DOI: 10.1039/D5DT00150A

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