On the mechanism of sp C-H borylation using -substituted pyridinium cations

ortho-N -Substituted pyridinium cations with the weakly coordinating anion [B(C 6 F 5 ) 4 ] − have been studied and crucial structural features in the sp 2 C-H borylation catalysis of 3-methylthiophene have been identified. The electron-deficiency of the aromatic core of the cation is essential for...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2024-06, Vol.53 (22), p.959-9595
Hauptverfasser: Slesarchuk, Nikita, Ma, Enlu, Miranda-Pizarro, Juan, Heikkinen, Sami, Schollmeyer, Dieter, Nieger, Martin, Vasko, Petra, Repo, Timo
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Zusammenfassung:ortho-N -Substituted pyridinium cations with the weakly coordinating anion [B(C 6 F 5 ) 4 ] − have been studied and crucial structural features in the sp 2 C-H borylation catalysis of 3-methylthiophene have been identified. The electron-deficiency of the aromatic core of the cation is essential for activity together with accessible protons. The spectroscopic yield of the borylation of 3-methylthiophene with catecholborane (CatBH) was optimized up to 86% and the method was further applied to other substrates such as N -alkylbenzenes. A mechanistic DFT study revealed the rate-limiting step in the catalysis to be the liberation of molecular H 2 (Δ G ‡ = 27.5 kcal mol −1 ), whereas the overall reaction was found to be exergonic by 5.1 kcal mol −1 . ortho-N -Substituted pyridinium cations with the weakly coordinating anion [B(C 6 F 5 ) 4 ] − have been studied and crucial structural features in the sp 2 C-H borylation catalysis of 3-methylthiophene have been identified.
ISSN:1477-9226
1477-9234
DOI:10.1039/d4dt00853g