catalysts system based on methylaluminoxane (MAO)-activated group 4 metal non-metallocene complexes is reported. The ligand derived from the 1,4-dithiabutanediyl-linked bis(phenol)s has been designed in order to ensure stereochemical rigidity utilizing the potentially hemi-labile function of the sulfur donors. Isospecificity during styrene polymerization was achieved using easily accessible catalyst precursors
报道了基于甲基铝氧烷(MAO)活化的4族
金属非
金属茂配合物的等特异性
苯乙烯聚合催化剂体系的开发。为了确保利用
硫供体的潜在半不稳定功能来确保立体
化学刚性,已经设计了衍生自1,4-二
硫代
丁烷二基连接的双(
苯酚)的
配体。使用类型(M = Ti,Zr,Hf; X = Cl,CH 2 Ph)的易于获得的催化剂前体可实现
苯乙烯聚合过程中的等特异性。观察到活性和立体选择性对
配体主链的显着依赖性,因为具有1,5-二
硫戊戊二基连接的双(
酚基)
配体的类似前体产生间同立构的聚
苯乙烯,具有较低的活性。