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用于高温乙烯均聚/共聚的带有庞大侧链的热稳定苯氧基亚胺钛催化剂。

Thermal-Robust Phenoxyimine Titanium Catalysts Bearing Bulky Sidearms for High Temperature Ethylene Homo-/Co- Polymerizations.

作者信息

Wang Xin, Ma Lishuang, Wang Xiaohua, Zhao Wenpeng, Liu Heng, Zhang Xuequan, Wang Feng

机构信息

Shandong Provincial College Laboratory of Rubber Material and Engineering, Qingdao University of Science & Technology, Qingdao 266042, China.

Key Laboratory of Rubber-Plastics, Ministry of Education, School of Polymer Science and Engineering, Qingdao University of Science & Technology, Qingdao 266042, China.

出版信息

Polymers (Basel). 2024 Mar 25;16(7):902. doi: 10.3390/polym16070902.

Abstract

A family of titanium complexes (-) with the general formula LTiCl supported by tridentate phenoxyimine [ONO] ligands (-) bearing bulky sidearms, were synthesized by treating the corresponding ligands with stoichiometric amount of TiCl. All the ligands and complexes were well characterized by H and C NMR spectroscopies, in which - methoxyl groups on -aryl moieties shifted to downfield, corroborating the successful coordination reaction. Structural optimization by DFT calculations revealed that one of the phenyl groups on dibenzhydryl moiety could form π-π stacking interaction with the salicylaldimine plane, because of which the obtained titanium complexes revealed good thermal stabilities for high-temperature polymerization of ethylene. The thermal robustness of the complexes was closely related to the strength of π-π stacking interactions, which were mainly influenced by the substituents on the dibenzhydryl moieties; , and emerged as the three best-performing complexes at 110 °C. With the aid of such π-π stacking interactions, the complexes were also found to be active at >150 °C, although decreased activities were witnessed. Besides homopolymerizations, complexes - were also found to be active for the high-temperature copolymerization of ethylene and 1-octene, but with medium incorporation percentage, demonstrating their medium copolymerization capabilities.

摘要

通过用化学计量的TiCl处理相应配体,合成了一类通式为LTiCl的钛配合物(-),其由带有庞大侧链的三齿苯氧基亚胺[ONO]配体(-)支撑。所有配体和配合物均通过1H和13C NMR光谱进行了充分表征,其中芳基部分上的甲氧基向低场移动,证实了配位反应的成功。DFT计算的结构优化表明,二苯甲基部分上的一个苯基可与水杨醛亚胺平面形成π-π堆积相互作用,因此所得到的钛配合物在乙烯高温聚合中显示出良好的热稳定性。配合物的热稳定性与π-π堆积相互作用的强度密切相关,而π-π堆积相互作用主要受二苯甲基部分上取代基的影响;在110°C时,配合物1、2和3表现为性能最佳的三种配合物。借助这种π-π堆积相互作用,还发现配合物在>150°C时具有活性,尽管活性有所下降。除了均聚反应外,还发现配合物1-3对乙烯和1-辛烯的高温共聚反应具有活性,但共聚掺入率中等,表明它们具有中等的共聚能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfe7/11013879/8476b2d0c33c/polymers-16-00902-ch001.jpg

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