Elorriaga David, de la Cruz-Martínez Felipe, Rodríguez-Álvarez María Jesús, Lara-Sánchez Agustín, Castro-Osma José Antonio, García-Álvarez Joaquín
Departamento de Química Inorgánica, Orgánica y Bioquímica-Centro de Innovación en Química Avanzada (ORFEO-CINQA), Facultad de Ciencias y Tecnologías Químicas, Universidad de Castilla-La Mancha, 13071, Ciudad Real, Spain.
Laboratorio de Compuestos Organometálicos y Catálisis (Unidad Asociada al CSIC), Departamento de Química Orgánica e Inorgánica, (IUQOEM), Centro de Innovación en Química Avanzada (ORFEO-CINQA), Facultad de Química, Universidad de Oviedo, 33071, Oviedo, Spain.
ChemSusChem. 2021 May 6;14(9):2084-2092. doi: 10.1002/cssc.202100262. Epub 2021 Mar 23.
Fast addition of highly polar organometallic reagents (RMgX/RLi) to cyclic carbonates (derived from CO as a sustainable C1 synthon) has been studied in 2-methyltetrahydrofuran as a green reaction medium or in the absence of external volatile organic solvents, at room temperature, and in the presence of air/moisture. These reaction conditions are generally forbidden with these highly reactive main-group organometallic compounds. The correct stoichiometry and nature of the polar organometallic alkylating or arylating reagent allows straightforward synthesis of: highly substituted tertiary alcohols, β-hydroxy esters, or symmetric ketones, working always under air and at room temperature. Finally, an unprecedented one-pot/two-step hybrid protocol is developed through combination of an Al-catalyzed cycloaddition of CO and propylene oxide with the concomitant fast addition of RLi reagents to the in situ and transiently formed cyclic carbonate, thus allowing indirect conversion of CO into the desired highly substituted tertiary alcohols without need for isolation or purification of any reaction intermediates.
在2-甲基四氢呋喃作为绿色反应介质或不存在外部挥发性有机溶剂的情况下,于室温及有空气/湿气存在时,研究了将高极性有机金属试剂(RMgX/RLi)快速添加到环状碳酸酯(由CO作为可持续的C1合成子衍生而来)的反应。这些反应条件通常对于这些高反应性的主族有机金属化合物是禁止的。极性有机金属烷基化或芳基化试剂的正确化学计量和性质使得能够直接合成:高度取代的叔醇、β-羟基酯或对称酮,且始终在空气存在和室温下进行。最后,通过将铝催化的CO与环氧丙烷的环加成反应与向原位且瞬时形成的环状碳酸酯中快速添加RLi试剂相结合,开发了一种前所未有的一锅/两步混合方案,从而无需分离或纯化任何反应中间体即可将CO间接转化为所需的高度取代的叔醇。