通过选择离子液体来调整silp催化丁-1-烯气相氢甲酰化反应的催化剂性能

Markus Schörner , Andreas Schönweiz , Stefanie Vignesh , Liudmila Mokrushina , Matthias Thommes , Robert Franke , Marco Haumann
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摘要

对于工业上相关的but‑1-烯的加氢甲酰基化,负载离子液相(SILP)的概念以前已经应用过。在这项工作中,我们研究了离子液体的类型(咪唑鎓和鏻基阳离子,各种阴离子)对除-1-烯、一氧化碳和氢之外的三种试剂的溶解度的影响。对于烯烃,使用COSMO-RS软件工具确定预测的溶解度值。将这些数据与实验确定的值进行比较。可以观察到在类似的离子液体中预测的溶解度和观察到的活性之间的相关性。IL[N1888][NTf2]可获得最高的活性。烯烃链长的变化支持了所观察到的溶解度和活性之间的相关性。随着链长的增加,SILP催化剂的活性也增加。对于导致羟醛的不期望的连续反应,发现底物溶解度在所用反应条件下不会显著影响活性或碳氢化合物积累。阴离子对羟醛的积累有更明显的影响,亲水性Cl−和[EtOSO3]−表现出最低的积累和羟醛形成活性,而[NTf2]−表现出最高的积累和形成活性。研究表明,Kamlet-Taft参数β是一个适合与不同离子液体的活性和积累相关的值。
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Tuning catalyst performance in the SILP-catalyzed gas-phase hydroformylation of but-1-ene by choice of the ionic liquid

For the industrially relevant hydroformylation of but‑1-ene the concept of supported ionic liquid phase (SILP) has been applied previously. In this work, we have studied the influence of the type of ionic liquid (imidazolium and phosphonium based cations, various anions) on the solubility of the three reagents but‑1-ene, carbon monoxide and hydrogen. For the olefin, the predicted solubility values were determined using the COSMO-RS software tool. These data were compared to the experimentally determined values. A correlation between the predicted solubility and the observed activity within similar ILs could be observed. The highest activity could be obtained with the IL [N1888][NTf2]. A variation of the olefin chain length supported the observed correlation between solubility and activity. With increasing chain length, the activity of the SILP catalyst also increased. For the undesired consecutive reaction leading to aldols it was found that the substrate solubility does not significantly influence the activity or hydrocarbon accumulation under the used reaction conditions. The anion had a more pronounced effect on the accumulation of aldols, with hydrophilic Cl and [EtOSO3] showing lowest accumulation as well as aldol formation activity, while [NTf2] showed highest values for both accumulation and formation activity. It was shown that the Kamlet-Taft-parameter β is a suitable value to be correlated with activity and accumulation for different ILs.

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