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A fast radical chain mechanism in the polyfluoroalkoxylation of aromatics through NO2 group displacement. Mechanistic and theoretical studies

机译:通过NO2基团置换实现芳烃多氟烷氧基化的快速自由基链机理。机械和理论研究

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Introduction of polyfluoroalkoxy and polyfluoroalkylthio substituents in aromatic rings can be achieved with mild conditions and short times thorough reaction of concentrated solutions of dinitrobenzenes in DMF with polyfluoro alcohols and polyfluoro thiols in moderate excess, in the presence of excess tetrabutylammonium fluoride as a base. Mechanistic studies suggest that under these conditions a fast radical chain mechanism operates. This mechanism is elicited by oxidation of a Meisenheimer complex and proceeds through a radical aromatic substitution with the polyfluoroalkoxy or the polyfluoroalkylthio radicals as key intermediates. At low concentrations, entrainment can be achieved with superoxide anion. A rationale for this effect is discussed. Answers to particular questions about the proposed mechanism are achieved through a theoretical study at the B3LYP/6-31+G(d,p) level. Specifically, the competition between the radical mechanism and the corresponding polar one (classical SNAr reaction) is studied in that way, with the conclusion that the key steps of the radical mechanism in our reaction conditions (polar aprotic solvent) are at least as efficient as the ones of the polar one, thus justifying the observed kinetic advantage for the chain reaction in the conditions where an efficient initiation occurs.
机译:在温和的条件下,在过量的四丁基氟化铵作为碱的存在下,通过适度过量的二硝基苯在DMF中的浓溶液与多氟醇和多氟硫醇的充分彻底反应,可以在芳环中引入多氟烷氧基和多氟烷硫基取代基。机理研究表明,在这些条件下,快速自由基链机制起作用。该机理是由迈森海默配合物的氧化引起的,并通过以多氟烷氧基或多氟烷硫基为主要中间体的自由基芳族取代进行。在低浓度下,可以用超氧阴离子夹带。讨论了这种效果的原理。通过在B3LYP / 6-31 + G(d,p)级别上进行理论研究,可以获得有关所提出机制的特定问题的答案。具体地说,以此方式研究了自由基机理与相应的极性反应(经典的SNAr反应)之间的竞争,得出的结论是,在我们的反应条件(极性非质子溶剂)中,自由基机理的关键步骤至少与极性的那些,因此证明在发生有效引发的条件下观察到的链反应动力学优势是合理的。

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