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通过动力学快速评估催化剂和 MAO 活化剂:在茂金属/MAO 催化剂中,是什么控制聚合物分子量和活性?

Rapid evaluation of catalysts and MAO activators by kinetics: what controls polymer molecular weight and activity in metallocene/MAO catalysts?

机构信息

Wolfson Materials and Catalysis Centre, School of Chemistry, University of East Anglia, Norwich, UK.

出版信息

Dalton Trans. 2013 Jul 7;42(25):9040-8. doi: 10.1039/c3dt00107e. Epub 2013 Mar 5.

Abstract

The influence of methylaluminoxane (MAO) catalyst activators of different concentrations and preparative histories on the performance of 1-hexene polymerisations was investigated by kinetic methods, using rac-Me2Si(2-Me-Benz[e]Ind)2ZrCl2 as the standard catalyst precursor. Fast sampling and analysis allow the time dependence of monomer conversion and the growth of the number-average polymer molecular weight to be determined at a sufficiently short timescale to make this a feasible method for routine catalyst evaluation. Differences in productivity, polymer molecular weight and active species count are shown to be primarily a linear function of the trimethylaluminium concentration. The results in toluene and heptane as solvents are compared; the data show that the inferior performance in heptane is due to a substantially lower active species concentration.

摘要

研究了不同浓度和制备历史的甲基铝氧烷(MAO)催化剂活化剂对 1-己烯聚合性能的影响,使用 rac-Me2Si(2-Me-Benz[e]Ind)2ZrCl2 作为标准催化剂前体。通过快速采样和分析,可以在足够短的时间尺度内确定单体转化率和数均聚合物分子量的增长随时间的变化,这使得该方法成为常规催化剂评价的一种可行方法。产率、聚合物分子量和活性物种数的差异主要是三甲基铝浓度的线性函数。比较了在甲苯和庚烷中的结果;数据表明,在庚烷中的性能较差是由于活性物种浓度显著降低。

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