阳离子聚合
化学
聚合
单体
催化作用
高分子化学
猝灭(荧光)
组合化学
聚合物
离子聚合
光化学
有机化学
产量(工程)
化学工程
稳定器(航空)
本体聚合
作者
Chenyang Guo,Hongyu Li,Maosheng Li,Youhua Tao
摘要
Poly(1,3-dioxolane) (PDXL) is a promising chemically recyclable thermoplastic material with abundant monomer availability and excellent physical properties, yet its widespread commercial application has been hindered by synthetic challenges, particularly in controlling molecular weights and chain-end fidelities. Here, we introduce an anion-binding catalytic cationic ring-opening polymerization (CROP) strategy to enable controlled synthesis of PDXL under mild conditions, by strategically utilizing a selenocyclodiphosph(V)azane catalyst and commercial Me 3 SiX (X = I or OTf) initiators. The polymerization operates via a noncovalent anion-binding principle to tame the reversible-deactivation CROP process. Notably, the Me 3 SiX initiator serves not only to initiate polymerization but also as a “mask” for the α-chain end, which is cleanly converted to a hydroxyl group upon quenching to ensure telechelic fidelity. This design further allows on-demand modulation of transient concentration of cationic species through counteranion engineering: using the low nucleofugality of I – minimizes competitive cyclization and ensures precise synthesis of low-molecular-weight (MW) α,ω-dihydroxy telechelic PDXL (4.2–24.4 kDa), whereas selecting the highly nucleofugal OTf – coupled with a proton trap facilitates rapid propagation to high-MW PDXL (up to 562.0 kDa).
科研通智能强力驱动
Strongly Powered by AbleSci AI