Complexes of aluminum, iron(III), and gallium(III) chlorides with ethers in synthesis of highly reactive polyisobutylene

S. Kostjuk
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Abstract

In this review, the latest achievements in the field of cationic polymerization of isobutylene catalyzed by the complexes of conventional Lewis acids with ethers are presented. The experimental and computational data on the influence of steric structure and basicity of ether used for the preparation of the Lewis acid-ether complex on the catalyst activity and regioselectivity of β-H abstraction are discussed here. Complexes of metal halides with linear (Bu2O) and moderately branched (iPr2O) ethers of moderate basicity (pKa from –4.3 to –5.4) displayed the highest activity and regioselectivity in the cationic polymerization of isobutylene affording highly reactive polyisobutylene (HR PIB) – the key intermediate in the preparation of motor oil and fuel additives. The review is also focusing on the adaptation of the developed catalytic system to the industry, which consists in using non-polar hydrocarbon solvents, high temperatures and monomer concentrations.
铝、铁(III)和氯化镓(III)与醚的配合物合成高活性聚异丁烯
本文综述了传统路易斯酸与醚配合物催化异丁烯阳离子聚合的最新研究进展。本文讨论了制备Lewis酸-醚配合物所用醚的空间结构和碱度对β-H萃取催化剂活性和区域选择性影响的实验和计算数据。金属卤化物与中等碱度(pKa从- 4.3到- 5.4)的线性(Bu2O)和中等支链(iPr2O)醚的配合物在异丁烯阳离子聚合中表现出最高的活性和区域选择性,从而产生高活性的聚异丁烯(HR PIB),这是制备机油和燃料添加剂的关键中间体。该综述还侧重于开发的催化系统在工业上的适应性,包括使用非极性碳氢化合物溶剂,高温和单体浓度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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