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使用含模块化吡啶 - 咪唑啉配体的钯(II)催化剂对一氧化碳/苯乙烯共聚反应的深入研究。

Insights into CO/styrene copolymerization by using Pd(II) catalysts containing modular pyridine-imidazoline ligands.

作者信息

Bastero Amaia, Claver Carmen, Ruiz Aurora, Castillón Sergio, Daura Elias, Bo Carles, Zangrando Ennio

机构信息

Departament de Química Física i Inorgànica, Universitat Rovira i Virgili, Pl. Imperial Tàrraco 1, 43005 Tarragona, Spain.

出版信息

Chemistry. 2004 Aug 6;10(15):3747-60. doi: 10.1002/chem.200306051.

Abstract

Continuing our studies into the effect that N-N' ligands have on CO/styrene copolymerization, we prepared new C(1)-symmetrical pyridine-imidazoline ligands with 4',5'-cis stereochemistry in the imidazoline ring (5) and 4',5'-trans stereochemistry (6-10) and compared them with our previously reported ligands (1-4). Their coordination to neutral methylpalladium(II) (5 a-10 a) and cationic complexes (5 b-10 b), investigated in solution by NMR spectroscopy, indicates that both the electronic and steric properties of the imidazolines determine the stereochemistry of the palladium complexes. The crystal structures of two neutral palladium precursors [Pd(Me)(2-n)Cl(n)(N-N')] (n=1 for 8 a; n=2 for 9 a') show that the Pd-N coordination distances and the geometrical distortions in the imidazoline ring depend on the electronic nature of the substituents in the imidazoline fragment. Density functional calculations performed on selected neutral and cationic palladium complexes compare well with NMR and X-ray data. The calculations also account for the formation of only one or two stereoisomers of the cationic complexes. The performance of the cationic complexes as catalyst precursors in CO/4-tert-butylstyrene copolymerization under mild pressures and temperatures was analyzed in terms of the productivity and degree of stereoregularity of the polyketones obtained. Insertion of CO into the Pd-Me bond, which was monitored by multinuclear NMR spectroscopy, shows that the N ligand influences the stereochemistry of the acyl species formed.

摘要

在继续研究N - N'配体对CO/苯乙烯共聚反应的影响时,我们制备了咪唑啉环具有4',5'-顺式立体化学结构的新型C(1)-对称吡啶 - 咪唑啉配体(5)以及4',5'-反式立体化学结构的配体(6 - 10),并将它们与我们之前报道的配体(1 - 4)进行比较。通过核磁共振光谱在溶液中研究它们与中性甲基钯(II)(5 a - 10 a)和阳离子配合物(5 b - 10 b)的配位情况,结果表明咪唑啉的电子性质和空间性质都决定了钯配合物的立体化学。两种中性钯前体[Pd(Me)(2 - n)Cl(n)(N - N')](8 a中n = 1;9 a'中n = 2)的晶体结构表明,Pd - N配位距离以及咪唑啉环中的几何畸变取决于咪唑啉片段中取代基的电子性质。对选定的中性和阳离子钯配合物进行的密度泛函计算与核磁共振和X射线数据吻合良好。这些计算还解释了阳离子配合物仅形成一种或两种立体异构体的原因。根据所得聚酮的生产率和立构规整度,分析了阳离子配合物在温和压力和温度下作为CO/4 - 叔丁基苯乙烯共聚反应催化剂前体的性能。通过多核核磁共振光谱监测CO插入Pd - Me键的情况,结果表明N配体影响所形成的酰基物种的立体化学。

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