Preparation of Aryloxy-aluminoxanes and Their Use as Activators in the Bis(imino)pyridyl Iron-catalyzed Oligomerization of Ethylene

Preparation of Aryloxy-aluminoxanes and Their Use as Activators in the Bis(imino)pyridyl Iron-catalyzed Oligomerization of Ethylene
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芳氧基铝氧烷的制备及其在双(亚氨基)吡啶基铁催化乙烯齐聚反应中作为活化剂的应用

DOI:
10.1007/s10118-018-2146-3
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发表时间:
2018-05
影响因子:
4.3
通讯作者:
Yang Yong-Rong
Yang Yong-Rong
中科院分区:
化学2区
文献类型:
--
作者:
Zhang Wei;Jiang Bin-Bo;Ye Jian;Liao Zu-Wei;Huang Zheng-Liang;Wang Jing-Dai;Yang Yong-Rong

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In this study, a series of aryloxy-aluminoxanes originated directly from the hydrolysis of reaction products of AlMe3 and phenols were synthesized, which could serve as effective polymer-retarding activators for the iron-catalyzed ethylene oligomerization. The molar ratios of [PhOH]/[AlMe3] and [H2O]/[Al] during the preparation were explored and their impacts on the oligomerization activity and product distribution were discussed. To obtain the effective activators with good polymer-retarding effect and relatively high activity, the optimized conditions were proposed to be [PhOH]/[AlMe3] = 0.5 and [H2O]/[Al] = 0.7. Various aluminoxanes with different [―OH] sources confirmed the importance of using phenols in preparing the effective polymer-retarding activators. By utilizing these aryloxy-aluminoxanes, the mass fraction of polymers in the total products could be reduced to lower than 1.0 wt%, which is much lower than that of the MAO-activated systems (> 30 wt%). This is a potential benefit for the industrial application of the iron-catalyzed oligomerization process.
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