Nickel and Palladium Catalyzed Olefin Polymerization

Fuzhou Wang
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引用次数: 2

Abstract

The research of the ethylene and α-olefins polymerizations using late transition metal catalysts should be highlight for development of polyolefin materials during the past two decades [1-5], because polyolefin materials are tremendously important in daily life [6]. Branched polyolefins are generally produced by transition-metal catalyzed copolymerization. The physical properties of polyolefin materials can be dramatically affected by their microstructures, which are controlled by the catalyst structures and their catalytic behavior. Progress of molecular the catalysts of transition metal complexes during these three decades enabled control of stereochemistry of poly(α-olefin)s, control of molecular weight of polyethylene and poly(α-olefin) s, synthesis of block copolymers by living polymerization, and copolymerization with various comonomers including polar functionalized olefins [5]. Thus, the design and synthesis of novel transition metal catalyst has always been a research focus of the polyolefin research.
镍钯催化烯烃聚合
由于聚烯烃材料在日常生活中有着极其重要的作用[6],因此,在过去的二十年中,聚烯烃材料的发展应重点研究利用晚期过渡金属催化剂催化乙烯和α-烯烃的聚合[1-5]。支化聚烯烃一般是由过渡金属催化共聚制得的。聚烯烃材料的微观结构对其物理性能有很大影响,而微观结构又受催化剂结构和催化行为的控制。近三十年来,过渡金属配合物的分子催化剂的进展使聚α-烯烃的立体化学控制、聚乙烯和聚α-烯烃的分子量控制、通过活性聚合合成嵌段共聚物以及与包括极性功能化烯烃在内的各种共聚单体的共聚成为可能[5]。因此,新型过渡金属催化剂的设计与合成一直是聚烯烃研究的一个热点。
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