Zhang Song-Lin, Xiao Chang, Wan Hai-Xing
Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, Wuxi 214122, Jiangsu Province, China.
Dalton Trans. 2018 Apr 3;47(14):4779-4784. doi: 10.1039/c8dt00291f.
Cu(iii) trifluoromethyl complexes are proposed as essential intermediates for many copper-promoted trifluoromethylation reactions, but remain elusive and scarcely explored. We report herein the isolation and spectroscopic and X-ray crystallographic characterization of diverse CuIII-CF3 complexes (6-10) with varied coordinating motifs (mono-, bi- or tridentate) and formal charges (neutral or monoanionic) for the ligand L (L is pyridine, 2,4,6-trimethylpyridine, quinol-8-yloxide or 2,6-bis(2'-pyridyl)pyridine). Square planar complexes 6, 7 and 9 show rapid dynamic behavior in solution possibly due to the weak Cu-CF3 bonds that can quickly dissociate and recombine with the CF3 radical. In contrast, 10, with octahedral geometry, is more rigid. Reactivity studies show that except for ion-pair complex 8, they are highly reactive for the trifluoromethylation of arylboronic acids and the C-H bond of terminal alkynes. Furthermore, syn-fluoro- and -oxy-trifluoromethylation across the triple bond of alkynes can be achieved using 6 and CsF or NaOPh. These results greatly expand the scope of isolated and well-characterized Cu(iii)-CF3 complexes, and establish their versatile reactivity that may be widely involved in copper-mediated trifluoromethylation reactions, thus substantiating the essential yet undeveloped aspects of trifluoromethylation chemistry.
三氟甲基铜(III)配合物被认为是许多铜促进的三氟甲基化反应的关键中间体,但仍然难以捉摸且鲜有研究。我们在此报告了多种具有不同配位模式(单齿、双齿或三齿)和配体L(L为吡啶、2,4,6-三甲基吡啶、喹啉-8-氧化物或2,6-双(2'-吡啶基)吡啶)形式电荷(中性或单阴离子)的CuIII-CF3配合物(6-10)的分离及其光谱和X射线晶体学表征。平面正方形配合物6、7和9在溶液中表现出快速的动态行为,这可能是由于较弱的Cu-CF3键能够快速解离并与CF3自由基重新结合。相比之下,具有八面体几何结构的10则更为刚性。反应性研究表明,除离子对配合物8外,它们对芳基硼酸的三氟甲基化和末端炔烃的C-H键具有高反应活性。此外,使用6和CsF或NaOPh可以实现炔烃三键上的顺式氟代和氧代三氟甲基化。这些结果极大地扩展了已分离和充分表征的Cu(III)-CF3配合物的范围,并确立了它们可能广泛参与铜介导的三氟甲基化反应的通用反应性,从而证实了三氟甲基化化学中基本但尚未开发的方面。