Mn(III) O^N^O Complexes as Water‐tolerant and Environmentally Benign Catalysts for Polyurethane Foam Synthesis

Author:

Ocansey Edward1,Sala Oliver2,Kamm Marina3,Joost Maximilian2,Bokern Stefan3,Rominger Frank4,Hashmi A. Stephen K.4,Mormul Jaroslaw12,Schaub Thomas12ORCID

Affiliation:

1. Catalysis Research Laboratory (CaRLa) University of Heidelberg University Im Neuenheimer Feld 584 69120 Heidelberg Germany

2. BASF SE Carl-Bosch-Straße 38 67056 Ludwigshafen Germany

3. BASF Polyurethanes GmbH Elastogranstr. 60 49448 Lemfoerde Germany

4. Organisch-Chemisches Institut Heidelberg University Im Neuenheimer Feld 270 69120 Heidelberg Germany

Abstract

AbstractPolyurethanes 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.

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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