A π–π interaction strategy for targeting highly thermostable bis(arylimino)pyridyliron precatalysts in ethylene polymerization†

IF 3.3 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Dalton Transactions Pub Date : 2025-04-03 DOI:10.1039/D5DT00571J
Muhammad Zada, Qiuyue Zhang, Qaiser Mahmood, Yanping Ma, Yang Sun and Wen-Hua Sun
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Abstract

The suboptimal catalytic performance of bis(arylimino)pyridyliron precatalysts in ethylene polymerization at elevated temperatures remains a significant challenge. In this study, a series of six bis(arylimino)pyridyliron chloride precatalysts with the incorporation of the benzosuberyl steric bulk were prepared and investigated for ethylene polymerization. Capping the axial sites of the iron center with the benzosuberyl steric bulk resulted in π–π interactions between the phenyl group and the chelate backbone, with a distance of ca. 3.293 Å for Fe3iPr, shorter than the sum of the van der Waals radii of carbon atoms (3.4 Å), as confirmed by single-crystal X-ray diffraction. These non-covalent interactions enhanced the thermal stability, catalytic activity, and polymer molecular weights. On activation with MAO or MMAO cocatalysts, these precatalysts exhibited the maximum activity of 2.53 × 107 gPE mol−1Fe h−1 at 80 °C and 1.88 × 107 gPE mol−1Fe h−1 at 100 °C, demonstrating their unprecedented thermal stability. The molecular weight of the produced polyethylene remained high, even at elevated temperatures. Moreover, ligand modifications had a pronounced impact on polymerization outcomes: the least sterically hindered complex, while producing comparatively lower molecular weight polyethylene, displayed higher activity and the most sterically hindered one showed the opposite tendency. The molecular weight dispersity of polyethylene showed a strong correlation with the precatalyst structure and reaction conditions. High melting points confirmed the presence of strictly linear structures with high vinyl end groups (up to 74%), as verified using 1H/13C NMR spectra. A comparison of structurally related iron precatalysts revealed significant improvements in both thermal stability and catalytic activity, attributed to the π–π interactions present in the current iron precatalysts.

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乙烯聚合中高热稳定性双(芳基)吡啶龙预催化剂的π−π相互作用策略
双(芳基)吡啶酮预催化剂在高温乙烯聚合中的次优催化性能仍然是一个重大的挑战。本研究制备了六种双(芳基)吡啶吡啶氯化铁预催化剂,并对其在苯甲亚酰基空间体中的聚合性能进行了研究。单晶x射线衍射证实,苯基与螯合主链之间发生π−π相互作用,Fe3iPr的相互作用距离约为3.293 Å,小于碳原子范德华半径之和(3.4 Å)。这些非共价相互作用增强了热稳定性、催化活性和聚合物分子量。在MAO或MMAO共催化剂的活化下,这些预催化剂在80℃和100℃下的最大活性分别为2.53 × 107 g mol-1 h-1和1.88 × 107 g mol-1 h-1,表现出前所未有的热稳定性。即使在高温下,生产出来的聚乙烯的分子量仍然很高。此外,配体修饰对聚合结果有显著的影响:最小位阻配合物在生成相对较低分子量聚乙烯的同时表现出较高的活性,而最大位阻配合物则表现出相反的趋势。聚乙烯的分子量分散性与预催化剂结构和反应条件密切相关。高熔点证实了具有高乙烯基末端基团(高达74%)的严格线性结构的存在,如1H/13C核磁共振谱所证实的那样。与结构相关的铁预催化剂的比较强调了在热稳定性和催化活性方面的显著改善,这归因于当前铁预催化剂中存在π−π相互作用。
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来源期刊
Dalton Transactions
Dalton Transactions 化学-无机化学与核化学
CiteScore
6.60
自引率
7.50%
发文量
1832
审稿时长
1.5 months
期刊介绍: Dalton Transactions is a journal for all areas of inorganic chemistry, which encompasses the organometallic, bioinorganic and materials chemistry of the elements, with applications including synthesis, catalysis, energy conversion/storage, electrical devices and medicine. Dalton Transactions welcomes high-quality, original submissions in all of these areas and more, where the advancement of knowledge in inorganic chemistry is significant.
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