Preprogrammed assembly of supramolecular polymer networks via the controlled disassembly of a metastable rotaxane

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Abstract

In our daily life, some of the most valuable commodities are preprogrammed or preassembled by a manufacturer; the end-user puts together the final product and gathers properties or function as desired. Here, we present a chemical approach to preassembled materials, namely supramolecular polymer networks (SPNs), which wait for an operator’s command to organize autonomously. In this prototypical system, the controlled disassembly of a metastable interlocked molecule (rotaxane) liberates an active species to the medium. This species crosslinks a ring-containing polymer and assembles with a reporting macrocycle to produce colorful SPNs. We demonstrate that by using identical preprogrammed systems, one can access multiple supramolecular polymer networks with different degrees of fluidity (μ* = 2.5 to 624 Pa s-1) and color, all as desired by the end-user.

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Washino, G., Soto, M. A., Wolff, S., & MacLachlan, M. J. (2022). Preprogrammed assembly of supramolecular polymer networks via the controlled disassembly of a metastable rotaxane. Communications Chemistry, 5(1). https://doi.org/10.1038/s42004-022-00774-5

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