Department of Chemistry, Boston College, Chestnut Hill, MA, 02467, USA.
Angew Chem Int Ed Engl. 2021 Nov 15;60(47):24800-24805. doi: 10.1002/anie.202108239. Epub 2021 Oct 5.
A novel class of enyne self-immolative polymers (SIPs) capable of metathesis cascade-triggered depolymerization is reported. Studies on model compounds established 1,6-enyne structures for efficient metathesis cascade reactions. SIPs incorporating the optimized 1,6-enyne motif were prepared via both polycondensation and iterative exponential growth approaches. These SIPs demonstrated excellent stability in strong acid, base, nucleophiles, or at elevated temperatures, and can undergo efficient and complete depolymerization once triggered by a metathesis catalyst. Further studies revealed that introducing a terminal alkene to the chain end of the enyne SIPs improved the depolymerization efficiency, and established their potential as stimuli-responsive materials.
本文报道了一类新型的炔烯自毁聚合物(SIP),它们能够引发聚合反应级联触发解聚。通过对模型化合物的研究,建立了 1,6-炔烯结构,以实现高效的聚合反应级联反应。通过缩聚和迭代指数增长方法制备了含有优化的 1,6-炔烯结构的 SIP。这些 SIP 在强酸、强碱、亲核试剂或高温下表现出优异的稳定性,一旦被聚合反应催化剂触发,就可以进行高效和完全的解聚。进一步的研究表明,在炔烯 SIP 的链端引入末端烯烃可以提高解聚效率,并确定了它们作为刺激响应材料的潜力。