共价键
催化作用
纳米技术
材料科学
动态共价化学
猝灭(荧光)
聚合物
计算机科学
热的
共价有机骨架
非共价相互作用
分子开关
作者
Guangwen Men,Xiaokong Liu
摘要
Covalent adaptable networks (CANs), crosslinked by dynamic covalent bonds (DCBs), possess reprocessability and recyclability like thermoplastics, offering a promising sustainable alternative to conventional thermosets. However, CANs face a significant trade-off between dynamicity and thermal stability, since heat-induced dynamic network reorganization enables reprocessing but inevitably compromises both mechanical performance and dimensional stability. Recent advances have sought to address such a dynamicity-stability trade-off through tuning the dynamicity of CANs, achieved by incorporating switchable and latent catalysts as well as exploiting the "quenching-activating" catalytic strategy. First, CANs incorporating switchable catalysts enable reversible tuning of their dynamicity based on stimuli-responsive regulation of the catalyst activity. Second, CANs incorporating latent catalysts allow off-to-on switching of their dynamicity based on stimuli-responsive release of catalytically active species from the latent catalysts, enabling a one-way transformation from thermosets to CANs. Moreover, CANs based on the "quenching-activating" catalytic strategy enable reversible "on-off" tuning of their dynamicity by quenching and activating the dynamic exchange reaction, allowing reversible switching between CANs and thermosets. Looking ahead, a promising direction is to develop dynamicity-tunable CANs via straightforward and simple "quenching-activating" strategies that allow rapid and on-demand transitions between CANs and thermosets, ultimately resolving the trade-off between dynamicity and thermal stability.
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