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首页> 外文期刊>Science Advances >Light-triggered topological programmability in a dynamic covalent polymer network
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Light-triggered topological programmability in a dynamic covalent polymer network

机译:动态共价聚合物网络中的光触发拓扑可编程性

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摘要

Dynamic covalent polymer networks exhibit unusual adaptability while maintaining the robustness of conventional covalent networks. Typically, their network topology is statistically nonchangeable, and their material properties are therefore nonprogrammable. By introducing topological heterogeneity, we demonstrate a concept of topology isomerizable network (TIN) that can be programmed into many topological states. Using a photo-latent catalyst that controls the isomerization reaction, spatiotemporal manipulation of the topology is realized. The overall result is that the network polymer can be programmed into numerous polymers with distinctive and spatially definable (thermo-) mechanical properties. Among many opportunities for practical applications, the unique attributes of TIN can be explored for use as shape-shifting structures, adaptive robotic arms, and fracture-resistant stretchable devices, showing a high degree of design versatility. The TIN concept enriches the design of polymers, with potential expansion into other materials with variations in dynamic covalent chemistries, isomerizable topologies, and programmable macroscopic properties.
机译:动态共价聚合物网络在保持传统共价网络的稳健性的同时表现出异常的适应性。通常,它们的网络拓扑结构是统计上不可易于的,因此它们的材料特性是非可编程的。通过引入拓扑异质性,我们展示了可以编程到许多拓扑状态的拓扑异构化网络(TIN)的概念。使用控制异构化反应的光潜催化剂,实现了拓扑的时空操纵。总体结果是网络聚合物可以编程为具有独特和空间可定义的(热)机械性能的多种聚合物。在许多实际应用的机会中,锡的独特属性可以探索用作形状移位结构,自适应机器人臂和抗断裂可拉伸装置,显示出高度的设计多功能性。锡概念丰富了聚合物的设计,具有潜在的膨胀进入其他材料,具有动态共价化学,可同质拓扑和可编程宏观性质的变化。

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