INM - Leibniz Institute for New Materials, Campus D2 2, Saarbrücken 66123, Germany.
Mater Horiz. 2021 May 1;8(5):1481-1487. doi: 10.1039/d0mh02024a. Epub 2021 Mar 5.
Dynamic exchange reactions in covalent adaptable networks (CANs) are difficult to probe directly via various macroscopic mechanical methods. Herein, we report a fluorescent strategy for directly reporting the dynamic bond exchange in transesterification-based CANs by using folding molecular probes. The folding probes (PDI-dimers) consist of two perylene diimide (PDI) cores, a spacer of dynamic esters between the two PDI cores, and reactive terminal groups. During transesterification in CANs, the PDI-dimers unfold their PDI excimers to show a sharp fluorescent color change from orange to bright yellow. This visual strategy is demonstrated by a crosslinked thiol-Michael network (TMN) and poly(4-hydroxybutyl acrylate) network (PHBA). The dynamic behaviors like stress relaxation and self-stiffening in these CANs can be directly read out via the change of fluorescent color. This method can provide quantitative information and show spatiotemporal resolution and therefore, can be applied to probe various dynamic chain exchange mechanisms in crosslinked materials.
动态交换反应在共价适应性网络(CANs)中很难通过各种宏观机械方法直接探测。在此,我们报告了一种荧光策略,通过使用折叠分子探针直接报告基于酯交换的 CANs 中的动态键交换。折叠探针(PDI-二聚体)由两个苝二酰亚胺(PDI)核心、两个 PDI 核心之间的动态酯间隔基和反应性末端基团组成。在 CANs 中的酯交换过程中,PDI-二聚体展开其 PDI 激基复合物,表现出从橙色到亮黄色的尖锐荧光颜色变化。这一可视化策略通过交联硫醇-迈克尔网络(TMN)和聚(4-羟基丁酸酯)网络(PHBA)得到了证明。这些 CANs 中的动态行为,如应力松弛和自增强,可以通过荧光颜色的变化直接读出。该方法可以提供定量信息,并显示时空分辨率,因此可以应用于探测交联材料中各种动态链交换机制。