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铑配合物催化的不对称氢化反应:前催化剂向活性物种的转化

Rhodium-complex-catalyzed asymmetric hydrogenation: transformation of precatalysts into active species.

作者信息

Preetz Angelika, Drexler Hans-Joachim, Fischer Christian, Dai Zhenya, Börner Armin, Baumann Wolfgang, Spannenberg Anke, Thede Richard, Heller Detlef

机构信息

Leibniz-Institut für Katalyse e.V. an der Universität Rostock, Albert-Einstein-Strasse 29a, Germany.

出版信息

Chemistry. 2008;14(5):1445-51. doi: 10.1002/chem.200701150.

DOI:10.1002/chem.200701150
PMID:18034444
Abstract

The use of diolefin-containing rhodium precatalysts leads to induction periods in asymmetric hydrogenation of prochiral olefins. Consequently, the reaction rate increases in the beginning. The induction period is caused by the fact that some of the catalyst is blocked by the diolefin and thus not available for hydrogenation of the prochiral olefin. Therefore, the maximum reaction rate cannot be reached initially. Due to the relatively slow hydrogenation of cyclooctadiene (cod) the share of active catalysts increases at first, and this leads to typical induction periods. The aim of this work is to quantify the hydrogenation of the diolefins cyclooctadiene (cod) and norborna-2,5-diene (nbd) for cationic complexes of the type [Rh(ligand)(diolefin)]BF(4) for the ligands Binap (1,1'-binaphthalene-2,2'-diylbis(phenylphosphine)), Me-Duphos (1,2-bis(2,5-dimethylphospholano)benzene, and Catasium in the solvents methanol, THF, and propylene carbonate. Furthermore, an approach is presented to determine the desired rate constant and the resulting respective pre-hydrogenation time from stoichiometric hydrogenations of the diolefin complexes via UV/Vis spectroscopy. This method is especially useful for very slow diolefin hydrogenations (e.g., cod hydrogenation with the ligands Me-Duphos, Et-Duphos (1,2-bis(2,5-diethylphospholano)benzene), and dppe (1,2-bis(diphenylphosphino)ethane).

摘要

含二烯烃的铑预催化剂的使用会导致前手性烯烃不对称氢化反应出现诱导期。因此,反应速率在开始时会增加。诱导期是由于部分催化剂被二烯烃阻断,从而无法用于前手性烯烃的氢化反应。所以,最初无法达到最大反应速率。由于环辛二烯(cod)的氢化反应相对较慢,活性催化剂的比例起初会增加,这就导致了典型的诱导期。本工作的目的是对[Rh(配体)(二烯烃)]BF₄类型的阳离子配合物中,二烯烃环辛二烯(cod)和降冰片二烯(nbd)在甲醇、四氢呋喃和碳酸丙烯酯等溶剂中,与配体联萘二苯膦(Binap)、1,2-双(2,5-二甲基膦基)苯(Me-Duphos)以及卡他辛(Catasium)的氢化反应进行量化。此外,还提出了一种通过紫外可见光谱法,从二烯烃配合物的化学计量氢化反应中确定所需速率常数和相应预氢化时间的方法。该方法对于非常缓慢的二烯烃氢化反应(例如,配体Me-Duphos、Et-Duphos(1,2-双(2,5-二乙基膦基)苯)和1,2-双(二苯基膦基)乙烷(dppe)的cod氢化反应)特别有用。

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