Liu Rui, Liu Yongqin, Yang Weidong, Li Xin, Feng Lianfang
State Key Laboratory of Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310027, Zhejiang, P. R. China.
Satellite Chemical Co., Ltd., Jiaxing 314000, Zhejiang, P. R. China.
ACS Omega. 2023 May 9;8(20):18290-18298. doi: 10.1021/acsomega.3c02083. eCollection 2023 May 23.
A series of Cr-based complexes bearing aminophosphine (P,N) ligands PhP-L-NH [L = CHCH (), L = CHCHCH (), and L = CHCH ()] and phosphine-imine-pyrryl (P,N,N) ligands 2-(PhP-L-N=CH)CHNH [L = CHCHCH () and L = CHCH ()] were prepared, and their catalytic properties were examined for ethylene tri/tetramerization. X-ray crystallographic analysis of complex indicated the κ-P,N bidentate coordination mode at the Cr(III) center and the distorted octahedral geometry of monomeric P,N-CrCl. Upon activation by methylaluminoxane (MAO), complexes bearing P,N (PCN backbone) ligands showed good catalytic reactivity for ethylene tri/tetramerization. On the other hand, complex bearing the P,N (PCN backbone) ligand was found active for non-selective ethylene oligomerization, while complexes bearing P,N,N ligands only produced polymerization products. In particular, the high catalytic activity of 458.2 kg/(g·Cr·h), excellent selectivity of 90.9% (1-hexene and 1-octene combined), and extremely low PE content of 0.1% were obtained with complex in toluene at 45 °C and 45 bar. These results suggest that rational control of P,N and P,N,N ligand backbones, including a carbon spacer and rigidity of a carbon bridge, can lead to the high-performance catalyst for the ethylene tri/tetramerization process.
制备了一系列带有氨基膦(P,N)配体PhP-L-NH [L = CHCH(),L = CHCHCH()和L = CHCH()]以及膦亚胺吡咯基(P,N,N)配体2-(PhP-L-N = CH)CHNH [L = CHCHCH()和L = CHCH()]的Cr基配合物,并研究了它们对乙烯三聚/四聚的催化性能。配合物的X射线晶体学分析表明,Cr(III)中心处为κ-P,N双齿配位模式,单体P,N-CrCl为扭曲的八面体几何结构。在用甲基铝氧烷(MAO)活化后,带有P,N(PCN主链)配体的配合物对乙烯三聚/四聚表现出良好的催化活性。另一方面,发现带有P,N(PCN主链)配体的配合物对非选择性乙烯齐聚有活性,而带有P,N,N配体的配合物仅产生聚合产物。特别是,在45℃和45巴下,配合物在甲苯中获得了458.2 kg/(g·Cr·h)的高催化活性、90.9%(1-己烯和1-辛烯总和)的优异选择性以及0.1%的极低聚乙烯含量。这些结果表明,合理控制P,N和P,N,N配体主链,包括碳间隔基和碳桥的刚性,可以得到用于乙烯三聚/四聚过程的高性能催化剂。