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FI catalysts: New olefin polymerization catalysts for the creation of value-added polymers

机译:FI催化剂:用于产生增值聚合物的新型烯烃聚合催化剂

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This contribution reports the discovery and application of phenoxy imine-based catalysts for olefin polymerization. Ligand-oriented catalyst design research has led to the discovery of remarkably active ethylene polymerization catalysts (FI Catalysts), which are based on electronically flexible phenoxy-imine chelate ligands combined with early transition metals. Upon activation with appropriate cocatalysts, FI Catalysts can exhibit unique polymerization catalysis (e.g., precise control of product molecular weights, highly isospecific and syndiospecific propylene polymerization, regio-irregular polymerization of higher alpha-olefins, highly controlled living polymerization of both ethylene and propylene at elevated temperatures, and precise control over polymer morphology) and thus provide extraordinary opportunities for the syntheses of value-added polymers with distinctive architectural characteristics. Many of the polymers that are available via the use of FI Catalysts were previously inaccessible through other means of polymerization. For example, FI Catalysts can form vinyl-terminated low molecular weight polyethylenes, ultra-high molecular weight amorphous ethylene-propylene copolymers and atactic polypropylenes, highly isotactic and syndiotactic polypropylenes with exceptionally high peak melting temperatures, well-defined and controlled multimodal polyethylenes, and high molecular weight regio-irregular poly(higher alpha-olefin)s. In addition, FI Catalysts combined with MgCl2-based compounds can produce polymers that exhibit desirable morphological features (e.g., very high bulk density polyethylenes and highly controlled particle-size polyethylenes) that are difficult to obtain with conventionally supported catalysts. In addition, FI Catalysts are capable of creating a large variety of living-polymerization-based polymers, including terminally functionalized polymers and block copolymers from ethylene, propylene, and higher alpha-olefins. Furthermore, some of the FI Catalysts can furnish living-polymerization-based polymers catalytically by combination with appropriate chain transfer agents. Therefore, the development of FI Catalysts has enabled some crucial advances in the fields of polymerization catalysis and polymer syntheses. (C) 2004 The Japan Chemical Journal Forum and Wiley Periodicals, Inc.
机译:该贡献报道了苯氧基亚胺基催化剂在烯烃聚合中的发现和应用。面向配体的催化剂设计研究导致发现了具有显着活性的乙烯聚合催化剂(FI催化剂),该催化剂基于电子柔性的苯氧基亚胺螯合物与早期过渡金属结合而成。在用适当的助催化剂活化后,FI催化剂可以表现出独特的聚合催化作用(例如,精确控制产物的分子量,高度同位和间位的丙烯聚合,高级α-烯烃的区域不规则聚合,乙烯和丙烯在60℃下均受到高度控制的活性聚合较高的温度,以及对聚合物形态的精确控制),因此为合成具有独特建筑特征的增值聚合物提供了绝佳机会。通过使用FI催化剂可获得的许多聚合物以前是无法通过其他聚合方式获得的。例如,FI催化剂可以形成乙烯基封端的低分子量聚乙烯,超高分子量无定形乙烯-丙烯共聚物和无规聚丙烯,具有极高峰值熔融温度的高度全同立构和间同立构聚丙烯,定义明确和受控的多峰聚乙烯,以及高分子量区域不规则聚(高级α-烯烃)。另外,将FI催化剂与基于MgCl 2的化合物组合可以产生表现出期望的形态特征的聚合物(例如,非常高的堆积密度聚乙烯和高度受控的粒度聚乙烯),而这是常规负载的催化剂难以获得的。另外,FI催化剂能够产生多种基于活性聚合的聚合物,包括末端官能化的聚合物和乙烯,丙烯和高级α-烯烃的嵌段共聚物。此外,一些FI催化剂可通过与适当的链转移剂结合而催化提供基于活性聚合的聚合物。因此,FI催化剂的发展已经在聚合催化和聚合物合成领域中取得了一些关键的进展。 (C)2004年日本化学杂志论坛和Wiley期刊公司

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