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越强越好:给体取代基推动分子铬烯烃聚合催化剂的催化活性。

The Stronger the Better: Donor Substituents Push Catalytic Activity of Molecular Chromium Olefin Polymerization Catalysts.

作者信息

Hansen Helge-Boj, Wadepohl Hubert, Enders Markus

机构信息

Institute of Inorganic Chemistry, Heidelberg University, Im Neuenheimer Feld 270, 69120, Heidelberg, Germany.

出版信息

Chemistry. 2021 Aug 2;27(43):11084-11093. doi: 10.1002/chem.202101586. Epub 2021 Jun 23.

Abstract

The donor strength of bifunctional pyridine-cyclopentadienyl ligands was altered systematically by the introduction of donating groups in the para-position of the pyridine. In the resulting chromium complexes an almost linear correlation between donor strength and the nitrogen-chromium distance as well as the electronic absorption maximum is experimentally observed. The connection of electron-donating groups in the ligand backbone leads to an efficient transfer of the electronic influences to the catalytically active metal centre without restricting it through steric effects. Therefore, catalytic olefin polymerization activity, which is already very high for the previously studied catalysts, increase considerably by attaching para-amino groups to the chelating pyridine or quinoline, respectively. Combining electron-rich indenyl ligands with para-amino substituted pyridines lead to the highest catalytic activities observed so far for this class of organo chromium olefin polymerisation catalysts. The resulting polymers are of ultra-high molecular weight and the ability of the catalysts to incorporate co-monomers is also very high.

摘要

通过在吡啶的对位引入供电子基团,系统地改变了双功能吡啶 - 环戊二烯基配体的给体强度。在所得的铬配合物中,实验观察到给体强度与氮 - 铬距离以及电子吸收最大值之间几乎呈线性关系。在配体主链中连接供电子基团可导致电子影响有效地转移到催化活性金属中心,而不会因空间效应而对其产生限制。因此,对于先前研究的催化剂而言已经非常高的催化烯烃聚合活性,通过分别将对氨基连接到螯合吡啶或喹啉上而大幅提高。将富电子的茚基配体与对氨基取代的吡啶相结合,导致此类有机铬烯烃聚合催化剂迄今为止观察到的最高催化活性。所得聚合物具有超高分子量,并且催化剂结合共聚单体的能力也非常高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c02/8453878/f72b170b6cc2/CHEM-27-11084-g007.jpg

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