Minnick Jennifer L, Domyati Doaa, Ammons Rachel, Tahsini Laleh
Department of Chemistry, Oklahoma State University, Stillwater, OK, United States.
Front Chem. 2019 Jan 31;7:12. doi: 10.3389/fchem.2019.00012. eCollection 2019.
Over the last two decades, N-heterocyclic carbene (NHC)-copper catalysts have received considerable attention in organic synthesis. Despite the popularity of copper complexes containing monodentate NHC ligands and recent development of poly(NHC) platforms, their application in C-C and C-heteroatom cross-coupling reactions has been limited. Recently, we reported an air-assisted Sonogashira-type cross-coupling catalyzed by well-defined cationic copper-pincer bis(NHC) complexes. Herein, we report the application of these complexes in Ullmann-type C-X (X = N, O) coupling of azoles and phenols with aryl halides in a relatively short reaction time. In contrast to other well-defined copper(I) catalysts that require an inert atmosphere for an efficient C-X coupling, the employed Cu(I)-pincer bis(NHC) complexes provide good to excellent yields in air. The air-assisted reactivity, unlike that in the Sonogashira reaction, is also affected by the base employed and the reaction time. With CsCO and KCO, the oxygen-generated catalyst is more reactive than the catalyst formed under argon in a short reaction time (12 h). However, the difference in reactivity is compromised after a 24 h reaction with KCO. The efficient pincer Cu-NHC/O/CsCO system provides great to excellent cross-coupling yields for electronically diverse aryl iodides and imidazole derivatives. The catalyst scope is controlled by a balance between nucleophilicity, coordinating ability, and the steric hindrance of aryl halides and N-/O-nucleophiles.
在过去二十年中,N-杂环卡宾(NHC)-铜催化剂在有机合成中受到了广泛关注。尽管含单齿NHC配体的铜配合物很受欢迎,且聚(NHC)平台也有了新发展,但它们在碳-碳和碳-杂原子交叉偶联反应中的应用仍然有限。最近,我们报道了一种由结构明确的阳离子铜钳形双(NHC)配合物催化的空气辅助Sonogashira型交叉偶联反应。在此,我们报道了这些配合物在相对较短的反应时间内,用于唑类和酚类与芳基卤化物的Ullmann型碳-卤(X = N,O)偶联反应中的应用。与其他需要惰性气氛才能高效进行碳-卤偶联的结构明确的铜(I)催化剂不同,所使用的Cu(I)-钳形双(NHC)配合物在空气中能提供良好到优异的产率。与Sonogashira反应不同,这种空气辅助的反应活性也受所用碱和反应时间的影响。使用碳酸铯和碳酸钾时,在短反应时间(12小时)内,由氧气生成的催化剂比在氩气中形成的催化剂更具活性。然而,与碳酸钾反应24小时后,反应活性的差异就不明显了。高效的钳形Cu-NHC/O/碳酸铯体系对于电子性质多样的芳基碘化物和咪唑衍生物能提供优异到极高的交叉偶联产率。催化剂的适用范围由芳基卤化物和N-/O-亲核试剂的亲核性、配位能力以及空间位阻之间的平衡来控制。