超分子化学
共价键
聚合物
量子纠缠
超分子聚合物
纳米技术
化学
合理设计
拓扑(电路)
网络共价键合
聚合物网络
桥接(联网)
分子
非共价相互作用
网络结构
化学稳定性
超分子组装
组合化学
RNA剪接
化学物理
分子识别
复杂网络
作者
Xue Yang,Zhewen Guo,Liya Chen,Yuling Pan,Zejian He,Zhenguo Zhang,Honggang Mei,Nan Jiang,Xiaole Tao,Ding Xiao,Guangfeng Li,Feihe Huang
摘要
Achieving efficient synergy between covalent and supramolecular polymers is an effective strategy for developing novel polymeric materials. However, realizing this synergy through rational chemical design to efficiently integrate both types of polymers within a single polymer network remains a significant challenge. Here, we achieve efficient synergy between covalent and supramolecular polymer chains by inducing entanglement of unsymmetrical topological nodes. Benefiting from the molecular entanglement strategy, this synergistic network effectively integrates the stability of a covalent polymer and the dynamics of a supramolecular polymer. While maintaining the integrity of the network, the reversible host-guest recognition in the supramolecular polymer dissipates the applied energy, thus allowing the mechanical properties of the entire network to be regulated. Besides, the host-guest recognition pairs can serve as splicing points for integrating additional polymers, transforming the topologically entangled covalent-supramolecular synergistic polymer platform into a multifunctional platform that accommodates a variety of polymers, significantly increasing the diversity of their structures and properties. These findings may spur further innovations in the field of polymers in general, as well as promote a deeper understanding of dynamic chemistry.
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