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Noncovalently cross-linked polymer materials are widely used due to their dynamic response, self-healing, recycling, and reprocessing capabilities. Among the noncovalent cross-linkers, photocontrolled cross-linking is of great interest due to its clean and noncontact process for forming and dissociating noncovalent polymer networks. However, most of the noncovalent cross-linkers rely on predetermined binding motifs that exhibit fixed association affinities, restricting their adaptability to diverse material properties. This work introduces a new strategy for photocontrolled noncovalent cross-linking based on photomodulated metal-ligand interactions. By employing interchangeable central cations, our system introduces a modular platform for tuning cross-linking strength, enabling property diversity without altering the underlying motif. As a result, we prepared materials that demonstrate a wide range of thermal and mechanical properties depending on the choice of central cation, expanding the potential for noncovalent polymer network materials and supporting their use in various applications.
Chen et al. (Tue,) studied this question.