Solinas Maurizio, Pfaltz Andreas, Cozzi Pier Giorgio, Leitner Walter
Institut für Technische und Makromolekulare Chemie, Worringer Weg 1, D-52074, Aachen, Germany.
J Am Chem Soc. 2004 Dec 15;126(49):16142-7. doi: 10.1021/ja046129g.
The enantioselective hydrogenation of N-(1-phenylethylidene)aniline using cationic iridium complexes with chiral phosphinooxazoline ligands was studied as a chemical probe to assess the potential of ionic liquid/carbon dioxide (IL/CO2) media for, multiphase catalysis. The biphasic system leads to activation, tuning, and immobilization of the catalyst that would be impossible in classical organic solvent systems or in either of the two unconventional media separately. In particular it is demonstrated that (i) the presence of CO2 can be beneficial or even mandatory for efficient hydrogenation in the IL; (ii) the precursor is activated in the IL by anion exchange allowing one to use in situ catalysts; (iii) the anion of the IL greatly influences the selectivity of the catalyst; (iv) the products are readily isolated from the catalyst solution by CO2 extraction without cross contamination of IL or catalyst; and (v) the IL leads to enhanced stability of the catalyst. These results are corroborated and rationalized on the basis of the physicochemical properties of the biphasic medium and the chemical characteristics of the catalytic systems.
使用带有手性膦基恶唑啉配体的阳离子铱配合物对N-(1-苯基亚乙基)苯胺进行对映选择性氢化反应,作为一种化学探针来评估离子液体/二氧化碳(IL/CO2)介质用于多相催化的潜力。这种双相体系能够实现催化剂的活化、调控和固定化,而这在传统有机溶剂体系中或单独的两种非常规介质中都是不可能实现的。特别需要指出的是,已证明:(i)对于在离子液体中进行高效氢化反应,二氧化碳的存在可能是有益的甚至是必不可少的;(ii)前体在离子液体中通过阴离子交换被活化,从而能够使用原位催化剂;(iii)离子液体的阴离子对催化剂的选择性有很大影响;(iv)通过二氧化碳萃取可轻松地从催化剂溶液中分离出产物,而不会造成离子液体或催化剂的交叉污染;(v)离子液体可提高催化剂的稳定性。基于双相介质的物理化学性质和催化体系的化学特性,这些结果得到了证实并做出了合理的解释。