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用于苯乙烯均聚和乙烯-苯乙烯共聚的双金属催化。优异的共聚单体选择性和插入区域化学。

Bimetallic catalysis for styrene homopolymerization and ethylene-styrene copolymerization. Exceptional comonomer selectivity and insertion regiochemistry.

作者信息

Guo Neng, Li Liting, Marks Tobin J

机构信息

Department of Chemistry, Northwestern University, Evanston, Illinois 60208-3113, USA.

出版信息

J Am Chem Soc. 2004 Jun 2;126(21):6542-3. doi: 10.1021/ja048761f.

Abstract

This communication reports the styrene homopolymerization behavior and ethylene-styrene copolymerization behavior of the covalently linked bimetallic constrained geometry catalyst (mu-CH2CH2-3,3'){(eta5-indenyl)1-Me2Si(tBuN)}2 (Ti2), which is the first single-site catalyst that effects not only styrene homopolymerization with high activity, but also efficient ethylene-styrene copolymerization over a broad styrene composition range (0-76% at 20 degrees C, 1.0 atm ethylene pressure). In styrene homopolymerization, a 50x increase in polymerization activity is achieved with Ti2 vs the mononuclear analogue, Ti1, using an identical trityl borate cocatalyst and polymerization conditions. In ethylene + styrene copolymerization, Ti2 enchains approximately 20% more styrene than Ti1 under identical reaction conditions. 13C NMR spectroscopy indicates that greater than two consecutive styrene units are enchained in the copolymer backbone produced by Ti2 + Ph3C+B(C6F5)4-. End group analysis of the styrene homopolymer produced by Ti2 + Ph3C+B(C6F5)4- suggests that 1,2-regiochemistry is installed in approximately 50% of the initiation steps. This unusual microstructure is believed to be related to the bimetallic catalyst structure.

摘要

本通讯报道了共价连接的双金属限定几何构型催化剂(μ-CH₂CH₂-3,3'){(η⁵-茚基)1-Me₂Si(tBuN)}₂(Ti₂)的苯乙烯均聚行为和乙烯-苯乙烯共聚行为,该催化剂是首例单中心催化剂,不仅能以高活性实现苯乙烯均聚,还能在较宽的苯乙烯组成范围内(20℃、乙烯压力1.0 atm时为0-76%)高效进行乙烯-苯乙烯共聚。在苯乙烯均聚中,使用相同的三苯基硼酸酯助催化剂和聚合条件,与单核类似物Ti₁相比,Ti₂的聚合活性提高了50倍。在乙烯+苯乙烯共聚中,在相同反应条件下,Ti₂比Ti₁多连接约20%的苯乙烯。¹³C NMR光谱表明,Ti₂ + Ph₃C⁺B(C₆F₅)₄⁻生成的共聚物主链中连接有两个以上连续的苯乙烯单元。对Ti₂ + Ph₃C⁺B(C₆F₅)₄⁻制备的苯乙烯均聚物的端基分析表明,约50%的引发步骤中存在1,2-区域化学。据信这种不寻常的微观结构与双金属催化剂结构有关。

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