Liu Peng, Jimaja Sètuhn, Immel Stefan, Thomas Christoph, Mayer Michael, Weder Christoph, Bruns Nico
Adolphe Merkle Institute, University of Fribourg, Fribourg, Switzerland.
Swiss National Center of Competence in Research Bio-Inspired Materials, Fribourg, Switzerland.
Nat Chem. 2024 Jul;16(7):1184-1192. doi: 10.1038/s41557-024-01508-x. Epub 2024 Apr 12.
Polymers that degrade on demand have the potential to facilitate chemical recycling, reduce environmental pollution and are useful in implant immolation, drug delivery or as adhesives that debond on demand. However, polymers made by radical polymerization, which feature all carbon-bond backbones and constitute the most important class of polymers, have proven difficult to render degradable. Here we report cyclobutene-based monomers that can be co-polymerized with conventional monomers and impart the resulting polymers with mechanically triggered degradability. The cyclobutene residues act as mechanophores and can undergo a mechanically triggered ring-opening reaction, which causes a rearrangement that renders the polymer chains cleavable by hydrolysis under basic conditions. These cyclobutene-based monomers are broadly applicable in free radical and controlled radical polymerizations, introduce functional groups into the backbone of polymers and allow the mechanically gated degradation of high-molecular-weight materials or cross-linked polymer networks into low-molecular-weight species.
按需降解的聚合物有促进化学循环利用、减少环境污染的潜力,并且在植入物自毁、药物递送或作为按需脱粘的粘合剂方面很有用。然而,通过自由基聚合制备的聚合物,其具有全碳键主链,是最重要的一类聚合物,已证明难以使其具有可降解性。在此,我们报道了基于环丁烯的单体,它们可以与传统单体共聚,并赋予所得聚合物机械触发的可降解性。环丁烯残基充当力化学基团,可发生机械触发的开环反应,该反应会引起重排,使聚合物链在碱性条件下可通过水解断裂。这些基于环丁烯的单体广泛适用于自由基聚合和可控自由基聚合,将官能团引入聚合物主链,并使高分子量材料或交联聚合物网络能够通过机械门控降解为低分子量物质。