Department of Chemistry , Northwestern University , Evanston , Illinois 60208-3113 , United States.
Corporate R&D , The Dow Chemical Company , 1776 Building , Midland , Michigan 48674 , United States.
J Am Chem Soc. 2019 May 15;141(19):7822-7830. doi: 10.1021/jacs.9b01445. Epub 2019 May 3.
Recent decades have witnessed intense research efforts aimed at developing new homogeneous olefin polymerization catalysts, with a primary focus on metal-Cl or metal-hydrocarbyl precursors. Curiously, metal-NR precursors have received far less attention. In this contribution, the Zr-amido complex FIZrX (FI = 2,4-di- tert-butyl-6-((isobutylimino)methyl)phenolate, X = NMe) is found to exhibit high ethylene polymerization activity and relatively high 1-octene coenchainment selectivity (up to 7.2 mol%) after sequential activation with trimethylaluminum, then PhCB(CF). In sharp contrast, catalysts with traditional hydrocarbyl ligands such as benzyl and methyl give low 1-octene incorporation (0-1.0 mol%). This unexpected selectivity persists under scaled/industrial operating conditions and was previously inaccessible with traditional metal-Cl or -hydrocarbyl precursors. NMR, X-ray diffraction, and catalytic control experiments indicate that in this case an FI ligand is abstracted from FIZr(NMe) by trimethylaluminum in the activation process to yield a catalytically active cationic mono-FIZr species. Heretofore this process was believed to serve only as a major catalyst deactivation pathway to be avoided. This work demonstrates the importance of investigating diverse precatalyst monodentate σ-ligands in developing new catalyst systems, especially for group 4 olefin polymerization catalysts.
近几十年来,人们一直在努力开发新型均相烯烃聚合催化剂,主要关注金属-Cl 或金属-烃基前体。奇怪的是,金属-NR 前体受到的关注要少得多。在本研究中,Zr-酰胺配合物 FIZrX(FI=2,4-二-叔丁基-6-((异丁基亚氨基)甲基)苯酚,X=NMe)在经过三甲基铝和 PhCB(CF )顺序活化后,表现出高的乙烯聚合活性和相对高的 1-辛烯共聚选择性(高达 7.2mol%)。相比之下,具有传统烃基配体(如苄基和甲基)的催化剂则得到低的 1-辛烯掺入(0-1.0mol%)。这种出乎意料的选择性在放大/工业操作条件下仍然存在,这是以前使用传统的金属-Cl 或-烃基前体无法实现的。NMR、X 射线衍射和催化控制实验表明,在这种情况下,三甲基铝在活化过程中从 FIZr(NMe)中提取 FI 配体,生成催化活性的阳离子单核 FIZr 物种。迄今为止,人们认为这个过程只是一种主要的催化剂失活途径,需要避免。这项工作表明,在开发新型催化剂体系时,研究不同的前体单齿 σ-配体的重要性,特别是对于第 4 族烯烃聚合催化剂。