Debsharma Tapas, Amfilochiou Virginia, Wróblewska Aleksandra Alicja, De Baere Ives, Van Paepegem Wim, Du Prez Filip E
Polymer Chemistry Research Group, Centre of Macromolecular Chemistry (CMaC), Department of Organic and Macromolecular Chemistry, Faculty of Sciences, Ghent University, Ghent B-9000, Belgium.
Department of Materials, Textiles and Chemical Engineering, Mechanics of Materials and Structures, Ghent University, Technologiepark 46, Zwijnaarde 9052 , Belgium.
J Am Chem Soc. 2022 Jul 13;144(27):12280-12289. doi: 10.1021/jacs.2c03518. Epub 2022 Jun 27.
To develop siloxane-containing vitrimers with fast dynamic characteristics, different mechanistic pathways have been investigated using a range of catalysts. In particular, one siloxane exchange pathway has been found to show a fast dynamic behavior in a useful temperature range (180-220 °C) for its application in vitrimers. The mechanism is found to involve 1,5,7-triazabicyclo [4.4.0] dec-5-ene (TBD) as an organic catalyst in the presence of hydroxyl groups. Using this new mechanistic approach, vitrimers with ultrafast stress-relaxation characteristics (relaxation times below 10 s) have been prepared with a readily available epoxy resin and siloxane-amine hardener. Subsequently, the low viscosity siloxane-containing vitrimer resin enabled the preparation of glass fiber-reinforced vitrimer composites using an industrially relevant vacuum-assisted resin infusion technique. The resulting composite was successfully thermoformed into a new shape, which makes it possible to envision a second life for such highly engineered materials.
为了开发具有快速动态特性的含硅氧烷的玻璃态高聚物,人们使用了一系列催化剂研究了不同的机理途径。特别地,已发现一种硅氧烷交换途径在适用于玻璃态高聚物的有用温度范围(180 - 220°C)内表现出快速动态行为。该机理被发现涉及1,5,7 - 三氮杂双环[4.4.0]癸 - 5 - 烯(TBD)作为在羟基存在下的有机催化剂。采用这种新的机理方法,用一种易于获得的环氧树脂和硅氧烷 - 胺固化剂制备了具有超快应力松弛特性(松弛时间低于10秒)的玻璃态高聚物。随后,含硅氧烷的低粘度玻璃态高聚物树脂使得能够使用工业相关的真空辅助树脂灌注技术制备玻璃纤维增强的玻璃态高聚物复合材料。所得复合材料成功地热成型为新形状,这使得设想这种高度工程化材料的二次使用寿命成为可能。