Synthetically Reversible, Proton-Mediated Nitrite N–O Bond Cleavage at a Dicopper Site
Article 2024 en
Authors
JF
Jeffrey Fernandez
AJ
Afshin Javadi
ST
Simon J. Teat
Abstract
1 min read
A monocationic dicopper(I,I) nitrite complex [Cu<sub>2</sub>(μ-κ<sup>1</sup>:κ<sup>1</sup>-O<sub>2</sub>N)DPFN][NTf<sub>2</sub>] (<b>2</b>) (DPFN = 2,7-bis(fluoro-di(2-pyridyl)methyl)-1,8-naphthyridine, NTf<sub>2</sub><sup>-</sup> = N(SO<sub>2</sub>CF<sub>3</sub>)<sub>2</sub><sup>-</sup>), was synthesized by treatment of a dicopper acetonitrile complex, [Cu<sub>2</sub>(μ-MeCN)DPFN][NTf<sub>2</sub>]<sub>2</sub> (<b>1</b>), with tetrabutylammonium nitrite ([<i>n</i>Bu<sub>4</sub>N][NO<sub>2</sub>]). DFT calculations indicate that <b>2</b> is one of three linkage isomers that are close in energy and presumably accessible in solution. Reaction of the μ-κ<sup>1</sup>:κ<sup>1</sup>-O<sub>2</sub>N complex with <i>p</i>-TolSH produces nitrous acid (HONO) and the corresponding dicopper thiolate species via an acid-base exchange reaction. Notably, treatment of <b>2</b> with HNTf<sub>2</sub> results in N-O bond cleavage in the putative, HONO-ligated complex to form the more thermodynamically favorable nitrosyl-bridged dicopper complex [Cu<sub>2</sub>(μ-NO)(μ-OH)DPFN][NTf<sub>2</sub>]<sub>2</sub> (<b>4</b>). This scission can be reversed via deprotonation of the hydroxy ligand with KO<sup><i>t</i></sup>Bu. X-ray diffraction studies confirmed the solid-state molecular structures of <b>2</b> and <b>4</b>. DFT calculations were used to construct a reaction coordinate diagram detailing formation of the μ-NO complex and to describe its electronic structure. The nitrosyl ligand in <b>4</b> is chemically labile, as demonstrated by its ready displacement in reactions with CO or NO<sub>2</sub><sup>-</sup>.
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