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镍(II)烷基配位阳离子和烷基乙烯配合物的机理研究:(α-二亚胺)镍(II)催化乙烯聚合中链增长和异构化的研究

Mechanistic studies of nickel(II) alkyl agostic cations and alkyl ethylene complexes: investigations of chain propagation and isomerization in (alpha-diimine)Ni(II)-catalyzed ethylene polymerization.

作者信息

Leatherman Mark D, Svejda Steven A, Johnson Lynda K, Brookhart Maurice

机构信息

Department of Chemistry, University of North Carolina at Chapel Hill, CB# 3290 Venable Hall, Chapel Hill, North Carolina 27599-3290, USA.

出版信息

J Am Chem Soc. 2003 Mar 12;125(10):3068-81. doi: 10.1021/ja021071w.

Abstract

The synthesis of a series of (alpha-diimine)NiR(2) (R = Et, (n)Pr) complexes via Grignard alkylation of the corresponding (alpha-diimine)NiBr(2) precursors is presented. Protonation of these species by the oxonium acid H(OEt(2))(2)BAr'(4) at low temperatures yields cationic Ni(II) beta-agostic alkyl complexes which model relevant intermediates present in nickel-catalyzed olefin polymerization reactions. The highly dynamic nature of these agostic alkyl cations is quantitatively addressed using NMR line broadening techniques. Trapping of these complexes with ethylene provides cationic Ni alkyl ethylene species, which are used to determine rates of ethylene insertion into primary and secondary carbon centers. The Ni agostic alkyl cations are also trapped by CH(3)CN and Me(2)S to yield Ni(R)(L)(+) (L = CH(3)CN, Me(2)S) complexes, and the dynamic behavior of these species in the presence of varied [L] is discussed. The kinetic data obtained from these experiments are used to present an overall picture of the ethylene polymerization mechanism for (alpha-diimine)Ni catalysts, including effects of reaction temperature and ethylene pressure on catalyst activity, polyethylene branching, and polymer architecture. Detailed comparisons of these systems to the previously presented analogous palladium catalysts are made.

摘要

本文介绍了通过相应的(α-二亚胺)NiBr₂前体的格氏烷基化反应合成一系列(α-二亚胺)NiR₂(R = Et, nPr)配合物的方法。在低温下,这些物种被氧鎓酸H(OEt₂)₂BAr′₄质子化,生成阳离子Ni(II)β-氢键烷基配合物,这些配合物模拟了镍催化烯烃聚合反应中存在的相关中间体。利用核磁共振谱线展宽技术定量研究了这些氢键烷基阳离子的高度动态性质。用乙烯捕获这些配合物得到阳离子Ni烷基乙烯物种,用于测定乙烯插入伯碳和仲碳中心的速率。Ni氢键烷基阳离子也被CH₃CN和Me₂S捕获,生成Ni(R)(L)⁺(L = CH₃CN, Me₂S)配合物,并讨论了这些物种在不同[L]存在下的动态行为。从这些实验中获得的动力学数据用于全面描述(α-二亚胺)Ni催化剂的乙烯聚合机理,包括反应温度和乙烯压力对催化剂活性、聚乙烯支化和聚合物结构的影响。并将这些体系与之前报道的类似钯催化剂进行了详细比较。

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