化学
聚合
高分子化学
单体
开环聚合
聚合物
硫化物
组合化学
有机化学
作者
Tianyi Du,Boming Shen,Jieyu Dai,Miaomiao Zhang,Xingjian Chen,Peiyuan Yu,Yun Liu
标识
DOI:10.26434/chemrxiv-2023-cjp57
摘要
Poly(disulfide)s are an emerging class of sulfur-containing polymers with applications in medicine, energy, and functional materials. However, the constituent dynamic covalent S−S bond is highly reactive in the presence of sulfide (RS−) anion, imposing a persistent challenge to control the polymerization. Here, we report an anion-binding approach to arrest the high reactivity of RS− chain end to control the synthesis of linear poly(disulfide)s, realizing a rapid, living ring-opening polymerization of 1,2-dithiolanes with narrow dispersity and high regioregularity (Mw /Mn ~ 1.1, Ps ~ 0.85). Mechanistic studies support the formation of a thiourea-base-sulfide ternary complex as the catalytically active species during the chain propagation. Theoretical analyses reveal a synergistic catalytic model where the catalyst preorganizes the protonated base and anionic chain end to establish spatial confinement over the bound monomer, effecting the observed regioselectivity. The catalytic system is amenable to monomers with various functional groups, and semicrystalline polymers are also obtained from lipoic acid derivatives by enhancing the regioregularity.
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