华南理工大学学报(自然科学版) ›› 2025, Vol. 53 ›› Issue (11): 1-.doi: 10.12141/j.issn.1000-565X.250115

• 化学化工 •    

环硫丙烷阴离子可控聚合及富硫共聚物合成策略

张鸿鑫   朱鸿轩   王国胡   刘奉壮   孙都政   

  1. 青海大学 化工学院,青海 西宁 810016

  • 出版日期:2025-11-25 发布日期:2025-05-09

Controlled Anionic Polymerization of Propylene Sulfide and Strategy for Synthesis of Sulfur-Rich Copolymers

ZHANG Hongxin   ZHU Hongxuan   WANG Guohu   LIU Fengzhuang   SUN Duzheng   

  1. Faculty of Materials Science and Engineering, Qinghai University,Xining 810016, Qinghai, China

  • Online:2025-11-25 Published:2025-05-09

摘要:

环硫化物开环聚合是合成含硫高分子材料的重要方法之一。然而,传统阴离子聚合过程中,高活性硫阴离子容易引发链转移副反应,导致产物分子量分布宽、结构不均一等问题,严重制约了聚合物链段结构的精确调控,影响材料性能可设计性和应用可靠性。针对这一难题,文中基于三乙基硼烷(Et3B)与磷腈碱tBuP1协同催化体系,以硫醇为引发剂,成功实现了环硫丙烷的高效可控聚合。实验结果表明,在0 °C反应条件下,Et3B的引入能够抑制硫阴离子向单体及二硫键的链转移副反应;密度泛函理论计算证实,Et3B通过与硫阴离子活性末端形成稳定的配位作用,显著降低了硫阴离子的亲核反应活性,从而实现了对聚合过程的精准调控。在此基础上发展了一种“一锅两步”富硫聚合物高效合成策略。该方法采用上述双组分催化体系,首先制备二硫化碳-环硫丙烷交替共聚物,并将其作为大分子链转移剂,通过二次投料,在不分离中间产物的条件下,直接引入苯乙烯单体进行扩链反应,最终成功合成了结构明确的聚苯乙烯-co-(二硫化碳-alt-环硫丙烷)三元共聚物,为精确合成富硫聚合物提供了新思路。

关键词: 环硫丙烷, 三乙基硼烷, 阴离子开环聚合反应, 共聚反应

Abstract:

Ring-opening polymerization of cyclic sulfur compounds is one of the important methods to synthesize sulfur-containing polymer. Traditional anionic polymerization techniques, however, face challenges due to the high reactivity of sulfur-centered anions, which frequently results in chain transfer side reactions that yield broad molar mass distributions and structural variations. This has the effect of undermining the controllability and reproducibility of material properties. To overcome this issue, this study presents a synergistic catalytic system that combines triethylborane (Et3B), the phosphazene base tBuP1, and a thiol initiator to facilitate efficient and controlled anionic ring-opening polymerization of propylene sulfide. Experimental characterization showed that adding Et3B completely blocked chain transfer reactions to monomers and prevented the formation of disulfide bonds, as evidenced by 1H NMR spectroscopy and size exclusion chromatography (SEC), when the reaction occurred at 0 °C. Density functional theory (DFT) calculations further revealed that Et3B stabilizes the active sulfur-centered anion intermediates through strong B-S coordination, significantly reducing their reactivity and allowing for precise control over polymerization. Building on this methodology, a “one-pot, two-step” strategy that merges anionic polymerization with reversible addition-fragmentation chain transfer (RAFT) polymerization has been established. An alternating copolymer of carbon disulfide and propylene sulfide was initially synthesized to serve as a macro-chain transfer agent, followed by the introduction of styrene to create a well-defined polystyrene-co-poly(carbon disulfide-alt-propylene sulfide) terpolymer. This work presents a facile strategy for the controlled synthesis of high-performance or functional sulfur-rich polymers.

Key words: propylene sulfide; triethylborane, anionic ring-opening polymerization, copolymerization