Beillard Audrey, Métro Thomas-Xavier, Bantreil Xavier, Martinez Jean, Lamaty Frédéric
Institut des Biomolécules Max Mousseron (IBMM) , UMR 5247 , CNRS , Université de Montpellier , ENSCM , Campus Triolet, Place Eugène Bataillon , 34095 Montpellier cedex 5 , France . Email:
Chem Sci. 2017 Feb 1;8(2):1086-1089. doi: 10.1039/c6sc03182j. Epub 2016 Sep 28.
Mechanical forces induced by ball-milling agitation enabled the highly efficient and widely applicable synthesis of Cu-carbene complexes from ,-diaryl-imidazolium salts and metallic copper. The required amount of gaseous dioxygen and insoluble copper could be reduced down to stoichiometric quantities, while reaction rates clearly outperformed those obtained in solution. Utilisation of Cu(0) as the copper source enabled the application of this approach to a wide array of ,-diaryl-imidazolium salts (Cl, BF and PF) that transferred their counter anion directly to the organometallic complexes. Cu-NHC complexes could be produced in excellent yields, including utilisation of highly challenging substrates. In addition, five unprecedented organometallic complexes are reported.
球磨搅拌产生的机械力实现了由α,α'-二芳基咪唑鎓盐和金属铜高效且广泛适用地合成铜卡宾配合物。所需的气态二氧和不溶性铜的量可减少至化学计量的量,同时反应速率明显优于在溶液中获得的反应速率。使用Cu(0)作为铜源使得该方法能够应用于多种α,α'-二芳基咪唑鎓盐(Cl、BF和PF),这些盐将其抗衡阴离子直接转移到有机金属配合物中。Cu-NHC配合物能够以优异的产率制备,包括使用极具挑战性的底物。此外,还报道了五种前所未有的有机金属配合物。