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Ester-free Thiol-X Resins: New Materials with Enhanced Mechanical Behavior and Solvent Resistance

机译:无酯的Thiol-X树脂:具有增强的机械性能和耐溶剂性的新材料

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摘要

A series of thiol-Michael and radical thiol-ene network polymers were successfully prepared from ester-free as well as ester-containing monomer formulations. Polymerization reaction rates, dynamic mechanical analysis, and solvent resistance experiments were performed and compared between compositions with varied ester loading. The incorporation of ester-free alkyl thiol, vinyl sulfone and allylic monomers significantly improved the mechanical properties when compared with commercial, mercaptopropionate-based thiol-ene or thiol-Michael networks. For polymers with no hydrolytically degradable esters, glass transition temperatures (Tg's) as high as 100 °C were achieved. Importantly, solvent resistance tests demonstrated enhanced stability of ester-free formulations over PETMP-based polymers, especially in concentrated basic solutions. Kinetic analysis showed that glassy step-growth polymers are readily formed at ambient conditions with conversions reaching 80% and higher.
机译:从无酯以及含酯的单体配方成功制备了一系列硫醇-迈克尔和自由基硫醇-烯网络聚合物。进行了聚合反应速率,动态力学分析和耐溶剂性实验,并比较了具有不同酯负载量的组合物。与市售的基于巯基丙酸酯的硫醇-烯或硫醇-迈克尔网络相比,无酯烷基硫醇,乙烯基砜和烯丙基单体的结合显着改善了机械性能。对于不具有可水解降解的酯的聚合物,玻璃化转变温度(Tg's)高达100°C。重要的是,耐溶剂性测试表明,与PETMP基聚合物相比,无酯配方具有更高的稳定性,尤其是在浓碱性溶液中。动力学分析表明,在环境条件下很容易形成玻璃状逐步增长的聚合物,转化率达到80%或更高。

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