Ocansey Edward, Sala Oliver, Kamm Marina, Joost Maximilian, Bokern Stefan, Rominger Frank, Hashmi A Stephen K, Mormul Jaroslaw, Schaub Thomas
Catalysis Research Laboratory (CaRLa), University of Heidelberg University, Im Neuenheimer Feld 584, 69120, Heidelberg, Germany.
BASF SE, Carl-Bosch-Straße 38, 67056, Ludwigshafen, Germany.
Chemistry. 2024 Mar 1;30(13):e202303736. doi: 10.1002/chem.202303736. Epub 2024 Jan 15.
Polyurethanes are synthesized on industrial scale by the reaction of diisocyanates with diols in the presence of catalysts which are commonly based on tin complexes and amines. However, due to the toxicity and volatility of these tin catalysts and amines, there is the need to develop new catalysts that are more environmentally benign. Herein, we report the synthesis of O^N^O pincer-ligated Mn(III) and Fe(III) complexes that serve as suitable catalysts for urethane formation and are stable to hydrolysis as predicted by computations and observed experimentally. The O^N^O pincer scaffold is vital to the activity of these catalysts, simultaneously ensuring increased solubility in the reaction medium as well as providing a stable framework upon dissociation of co-ligands in the catalytic cycle. In silico mechanistic investigations for urethane formation show that the stabilization of active species in square-planar geometries enabled by these O^N^O ligands permit the simultaneous coordination of alcohol and isocyanate in suitable configuration at the metal center.
聚氨酯是在工业规模上通过二异氰酸酯与二醇在通常基于锡配合物和胺的催化剂存在下反应合成的。然而,由于这些锡催化剂和胺的毒性和挥发性,需要开发对环境更友好的新型催化剂。在此,我们报道了O^N^O钳形配位的Mn(III)和Fe(III)配合物的合成,这些配合物是聚氨酯形成的合适催化剂,并且如计算预测和实验观察的那样对水解稳定。O^N^O钳形支架对这些催化剂的活性至关重要,同时确保在反应介质中的溶解度增加,并在催化循环中辅助配体解离时提供稳定的框架。聚氨酯形成的计算机模拟机理研究表明,这些O^N^O配体使活性物种在平面正方形几何构型中稳定,从而允许醇和异氰酸酯在金属中心以合适的构型同时配位。