Barrado Alejandro G, Bayne Julia M, Johnstone Timothy C, Lehmann Christian W, Stephan Douglas W, Alcarazo Manuel
Institut für Organische und Biomelekulare Chemie, Georg-August-Universität Göttingen, Tammannstraβe 2, 37077 Göttingen, Germany.
Dalton Trans. 2017 Nov 28;46(46):16216-16227. doi: 10.1039/c7dt03197a.
Two strategies were used to prepare dicationic phosphonium cations. The first method consists of the reaction of 1-chlorocyclopropenium salts with phosphines to obtain cyclopropenium-substituted phosphonium salts 10a-f[BF4]. Anion exchange was performed to access the corresponding [B(CF)] analogues 10a-f[B(C6F5)4], which showed much higher solubility in organic solvents. In addition, we developed a synthesis of dicationic phosphonium salts containing 2-, 3-, or 4-methylpyridinium substituents 11a-c[TfO], which were converted as well to their [B(CF)] analogues 11a-c[B(C6F5)4]. Finally, the phenoxy-substituted phosphonium salt 12[B(C6F5)4] was also prepared. All salts demonstrated remarkable stability in air as compared with their fluorinated analogues. The Lewis acidity of these salts was evaluated by means of theoretical calculations and finally, they were shown to be effective in initiating the Mukaiyama-aldol reaction.
我们采用了两种策略来制备双阳离子鏻盐。第一种方法是1-氯环丙烯鎓盐与膦反应,得到环丙烯取代的鏻盐10a-f[BF4]。通过阴离子交换得到相应的[B(CF)]类似物10a-f[B(C6F5)4],其在有机溶剂中的溶解度更高。此外,我们还开发了一种合成含2-、3-或4-甲基吡啶鎓取代基的双阳离子鏻盐11a-c[TfO]的方法,它们也被转化为相应的[B(CF)]类似物11a-c[B(C6F5)4]。最后,还制备了苯氧基取代的鏻盐12[B(C6F5)4]。与它们的氟化类似物相比,所有盐在空气中都表现出显著的稳定性。通过理论计算评估了这些盐的路易斯酸度,最终结果表明它们能有效地引发 Mukaiyama-羟醛反应。