Taublaender M Josef, Mezzavilla Stefano, Thiele Sophia, Glöcklhofer Florian, Unterlass Miriam M
Institute of Applied Synthetic Chemistry, Technische Universität Wien, Getreidemarkt 9/163, 1060, Vienna, Austria.
Institute of Materials Chemistry, Technische Universität Wien, Getreidemarkt 9/165, 1060, Vienna, Austria.
Angew Chem Int Ed Engl. 2020 Aug 24;59(35):15050-15060. doi: 10.1002/anie.202000367. Epub 2020 May 11.
Various polyimides and polyamides have recently been prepared via hydrothermal synthesis in nothing but H O under high-pressure and high-temperature conditions. However, none of the prepared polymers feature a truly conjugated polymer backbone. Here, we report on an expansion of the synthetic scope of this straightforward and inherently environmentally friendly polymerization technique to the generation of conjugated polymers. Selected representatives of two different polymer classes, pyrrone polymers and polybenzimidazoles, were generated hydrothermally. We present a mechanistic discussion of the polymer formation process as well as an electrochemical characterization of the most promising product.
最近,各种聚酰亚胺和聚酰胺都是在高压和高温条件下仅通过在水中的水热合成制备的。然而,所制备的聚合物均没有真正的共轭聚合物主链。在此,我们报道了这种直接且本质上环境友好的聚合技术的合成范围扩展到共轭聚合物的生成。通过水热法生成了两种不同聚合物类别(吡咯聚合物和聚苯并咪唑)的选定代表物。我们对聚合物形成过程进行了机理讨论,并对最有前景的产物进行了电化学表征。