Affiliation:
1. POLYKEY POLYMERS, Joxe Mari Korta Center Avenida de Tolosa, 72 20018 Donostia-San Sebastian Spain
2. POLYMAT University of the Basque Country UPV/EHU, Joxe Mari Korta Center Avenida de Tolosa, 72 20018 Donostia-San Sebastián Spain
3. Ikerbasque, Basque Foundation for Science 48013 Bilbao Spain
Abstract
AbstractOrganocatalysts are used in a wide range of polymerisation reactions with the advantage of being often more benign or sustainable, while maintaining high catalytic activity. However, the low thermal stability of most of these compounds remain an obstacle for high temperature reactions. It was recently reported that complexes formed from a base such as 1,4,7‐triazabicyclodecene (TBD) and an acid such as methane sulfonic acid (MSA) demonstrate high thermal stability while efficiently catalysing polycondensation reactions. However, TBD is not cost‐efficient neither available at industrial scale, which makes it unfit for scaling up. Herein, eight different bases have been investigated to replace TBD. First, we confirmed the complex formation between the MSA and the base by nuclear magnetic resonance spectroscopy while confirming the thermal stability of the mixtures by thermogravimetric analysis before evaluating their catalytic activity in the self‐condensation of 1,6‐hexanediol. Among the different investigated bases, 1,1,3,3‐tetramethyl guanidine (TMG) appeared to be the most appropriate option since it gathers both high thermal stability and good catalytic activity. These characteristics make TMG suitable for replacing TBD in the self‐condensation of diols while opening the way for being used in a wide range of high temperature (de)polymerisation reactions.