Lei Yizhu, Chen Zaifei, Li Guangxing
School of Chemistry and Materials Engineering, Liupanshui Normal University Liupanshui Guizhou 553004 PR China
Jingchu University of Technology Jingmen Hubei 448000 PR China
RSC Adv. 2019 Nov 11;9(63):36600-36607. doi: 10.1039/c9ra06680b.
A series of phosphorus-functionalized porous organic polymers supported palladium catalysts with tunable surface wettability were successfully prepared using an easy copolymerization and successive immobilization method. The obtained polymers were carefully characterized by many physicochemical methods. Characterization results suggested that the prepared materials featured hierarchically porous structures, high pore volumes, tunable surface wettability and strong electron-donating ability towards palladium species. We demonstrated the use of these solid catalysts for water-mediated Suzuki-Miyaura coupling reactions. It was found that the surface wettability of the prepared catalysts has an important influence on their catalytic activities. The optimal catalyst, which has excellent amphipathicity and relatively high phosphorus concentration, displayed superior catalytic activity compared to the other catalysts. Under ambient conditions, a variety of aryl chlorides can be efficiently transformed to biaryls in high yields. Moreover, the catalyst could be easily recovered and reused at least six times.
采用简便的共聚和连续固定化方法,成功制备了一系列具有可调表面润湿性的磷功能化多孔有机聚合物负载钯催化剂。通过多种物理化学方法对所得聚合物进行了详细表征。表征结果表明,所制备的材料具有分级多孔结构、高孔体积、可调表面润湿性以及对钯物种的强给电子能力。我们展示了这些固体催化剂在水介导的铃木-宫浦偶联反应中的应用。发现所制备催化剂的表面润湿性对其催化活性有重要影响。具有优异两亲性和相对高磷浓度的最佳催化剂表现出比其他催化剂更高的催化活性。在环境条件下,可以高产率地将各种芳基氯有效地转化为联芳基。此外,该催化剂可以很容易地回收并重复使用至少六次。