Liu Qiang, Wu Lipeng, Fleischer Ivana, Selent Detlef, Franke Robert, Jackstell Ralf, Beller Matthias
Leibniz-Institut für Katalyse e.V. an der Universität Rostock, Albert-Einstein-Strasse 29a, 18059 Rostock (Germany).
Chemistry. 2014 Jun 2;20(23):6888-94. doi: 10.1002/chem.201400358. Epub 2014 May 8.
An efficient domino ruthenium-catalyzed reverse water-gas-shift (RWGS)-hydroformylation-reduction reaction of olefins to alcohols is reported. Key to success is the use of specific bulky phosphite ligands and triruthenium dodecacarbonyl as the catalyst. Compared to the known ruthenium/chloride system, the new catalyst allows for a more efficient hydrohydroxymethylation of terminal and internal olefins with carbon dioxide at lower temperature. Unwanted hydrogenation of the substrate is prevented. Preliminary mechanism investigations uncovered the homogeneous nature of the active catalyst and the influence of the ligand and additive in individual steps of the reaction sequence.
报道了一种高效的钌催化烯烃的多米诺逆水煤气变换(RWGS)-氢甲酰化-还原反应制醇。成功的关键是使用特定的大位阻亚磷酸酯配体和十二羰基三钌作为催化剂。与已知的钌/氯化物体系相比,新催化剂能在较低温度下使末端和内烯烃与二氧化碳进行更有效的氢羟甲基化反应。可防止底物发生不必要的氢化反应。初步的机理研究揭示了活性催化剂的均相性质以及配体和添加剂在反应序列各个步骤中的影响。