Ramos-Martín Marina, Ríos-Lombardía Nicolas, González-Sabín Javier, García-Garrido Sergio E, Concellón Carmen, Presa Soto Alejandro, Del Amo Vicente, García-Álvarez Joaquín
Laboratorio de Química Sintética Sostenible (QuimSinSos), Departamento de Química Orgánica e Inorgánica, (IUQOEM), Centro de Innovación en Química Avanzada (ORFEO-CINQA), Facultad de Química, Universidad de Oviedo, E33071, Oviedo, Spain).
Entrechem SL, Vivero Ciencias de la Salud, Colegio Santo Domingo de Guzmán s/n, 33011, Oviedo, Spain.
Chemistry. 2023 Oct 13;29(57):e202301736. doi: 10.1002/chem.202301736. Epub 2023 Sep 4.
An efficient, simple and general protocol for the selective hydration of terminal alkynes into the corresponding methyl ketones has been developed by using a cheap, easy-to-synthesise and sustainable Fe -based eutectic mixture [FeCl ⋅ 6H O/Gly (3 : 1)] as both promoter and solvent for the hydration reaction, working: i) under mild (45 °C) and bench-type reaction conditions (air); and ii) in the absence of ligands, co-catalysts, co-solvents or toxic, non-abundant and expensive noble transition metals (Au, Ru, Pd). When the final methyl ketones are solid/insoluble in the eutectic mixture, the hydration reaction takes place in 30 min, and the obtained methyl ketones can be isolated by simply decanting the liquid Fe -DES, allowing the direct isolation of the desired ketones without VOC solvents. By using this straightforward and simple isolation protocol, we have been able to recycle the Fe -based eutectic mixture system up to eight consecutive times. Furthermore, the Fe -eutectic mixture is able to promote the selective and efficient formal oxidation of internal alkynes into 1,2-diketones, with the possibility of recycling this system up to three consecutive times. Preliminary investigations into a possible mechanism for the oxidation of the internal alkynes seem to indicate that it proceeds through the formation of the corresponding methyl ketones and α-chloroketones.
通过使用廉价、易于合成且可持续的铁基低共熔混合物[FeCl₃·6H₂O/甘氨酸(3∶1)]作为水合反应的促进剂和溶剂,已开发出一种高效、简单且通用的方案,可将末端炔烃选择性水合为相应的甲基酮,该方案在以下条件下运行:i) 在温和的(45℃)和台式反应条件(空气)下;ii) 在不存在配体、助催化剂、共溶剂或有毒、稀缺且昂贵的贵金属(Au、Ru、Pd)的情况下。当最终的甲基酮为固体/不溶于低共熔混合物时,水合反应在30分钟内发生,并且通过简单倾析液态铁基深共熔溶剂即可分离得到的甲基酮,无需挥发性有机化合物溶剂就能直接分离出所需的酮。通过使用这种直接且简单的分离方案,我们已能够将铁基低共熔混合物系统连续循环使用多达八次。此外,铁基低共熔混合物能够促进内部炔烃选择性高效地氧化为1,2 - 二酮,该系统有可能连续循环使用多达三次。对内部炔烃氧化可能机制的初步研究似乎表明,其通过形成相应的甲基酮和α - 氯代酮来进行。