Supported Constrained-Geometry Catalysts on Cross-Linked (Aminomethyl)polystyrene: Studies of Ethylene and 1-Octene Polymerizations
作者:Rajeswari M. Kasi、E. Bryan Coughlin
DOI:10.1021/om020482i
日期:2003.3.1
affords a mixture of half-sandwich and zirconocene complexes. Support of complex 2 or 7 on (aminomethyl)polystyrene (AMPS, 1% cross-linking, 1.3 wt % N, 0.928 mmol of N/g of support), where the mole ratio of amine content of the support to precursor catalysts was selected to be 3:1, leads to the assembly of the constrained-geometry catalyst (CGCs) 8 or 9, respectively. From the 29Si NMR, the presence
TiCl 4与(氯二甲基甲硅烷基)(三甲基甲硅烷基)环戊二烯的反应导致Me 3 SiCl的化学选择性消除,并干净地得到三氯化钛((氯二甲基甲硅烷基)环戊二烯基)钛(2)。同样地,的TiCl的反应4与(chlorodimethylsilyl)(三甲基甲硅烷)四甲基环戊二烯(6)还导致在化学选择性消除的Me 3的SiCl和干净,得到((chlorodimethylsilyl)四甲基环戊二烯)三氯化钛(7)。该观察结果与6与ZrCl 4的反应形成鲜明对比,后者导致Me的化学选择性消除。3 SiCl,但提供了半三明治和锆茂复合物的混合物。在(氨基甲基)聚苯乙烯上的配合物2或7的载体(AMPS,1%交联,1.3 wt%N,0.928 mmol N / g载体),其中选择载体中胺含量与前体催化剂的摩尔比如果将其设为3:1,则会分别导致几何约束催化剂(CGC)8或9的组装。根据29 Si NMR,在络合