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Synthesis and Characterization of Thiol-Ene Functionalized Siloxanes and Evaluation of their Polymerization Kinetics, Network Properties, and Dental Applications

机译:硫醇-烯基官能化硅氧烷的合成,表征及其聚合动力学,网络性质和牙科应用的评估

摘要

We explored formation-structure-property relationships in thiol-ene functionalized oligosiloxanes to create crosslinked networks. Specifically, nine oligomers were synthesized, three with thiol-functional silane repeats and three with allyl-functional silane repeats. Structural variations in each oligomer were systematically induced through the incorporation of non-reactive repeats bearing either diphenyl or di-n-octyl moieties, and the oligomer molecular weight was limited by the presence of monofunctional silane condensation species. The molecular weights and chain compositions of all oligomers were ascertained and subsequently used in the evaluation of network properties formed upon photopolymerization of thiol- and ene-functional reactants. Polymerization kinetics of the thiol-ene functionalized siloxanes were also investigated using photoinitiation owing to the spatial and temporal control afforded by this technique. In particular, the effects of the viscosity of the ene-functionalized oligomer and the degree of thiol functionalization on the observed polymerization rate were determined. Results showed that the speed of polymerization varied with changes to the rate-limiting step, which was heavily influenced by neighboring non-reactive functionalities. Moreover, the thiol-ene reaction was found to exhibity unimolecular termination exclusively in siloxane-based systems. Proposed use of the thiol-ene functionalized siloxane system as a dental impression material necessitated the development of a redox initiation scheme. Evaluation of the benzoylperoxide/dimethyl-p-toluidine redox pair in traditional systems showed bulk thiol-ene polymerizations comparable to photoinitiation with the added advantage of uninhibited depth control, as also demonstrated in small molecule thiol-ene coupling reactions initiated by this same redox system. Application of the redox pair to the siloxane system allowed for the viscoelastic properties as well as the feature replication abilities to be compared against commercial impression materials. The siloxane system was found to match the commercial material for strain recovery and stress relaxation and exceed its replication properties though it would require greater overall strength to function adequately in the clinical setting.
机译:我们探索了硫醇-烯官能化的低聚硅氧烷中的形成-结构-性质关系,以创建交联网络。具体而言,合成了九个低聚物,其中三个具有硫醇官能的硅烷重复序列,而三个具有烯丙基官能的硅烷重复序列。通过掺入带有二苯基或二正辛基部分的非反应性重复序列,系统性地诱导了每个低聚物的结构变化,并且低聚物的分子量受到单官能硅烷缩合物种的存在的限制。确定所有低聚物的分子量和链组成,然后将其用于评估硫醇和烯官能反应物光聚合后形成的网络性质。由于该技术提供的空间和时间控制,还使用光引发研究了硫醇-烯官能化硅氧烷的聚合动力学。特别地,确定了烯官能化的低聚物的粘度和硫醇官能化的程度对观察到的聚合速率的影响。结果表明,聚合速度随限速步骤的变化而变化,这主要受相邻的非反应性官能团的影响。此外,发现硫醇-烯反应仅在基于硅氧烷的体系中表现出单分子终止。提议将硫醇-烯官能化的硅氧烷体系用作牙科印模材料需要开发氧化还原引发方案。在传统体系中对苯甲酰过氧化物/二甲基对甲苯胺氧化还原对的评估表明,本体硫醇-烯聚合可与光引发媲美,而且具有不受抑制的深度控制的优势,这也证明了由同一氧化还原体系引发的小分子硫醇-烯偶联反应。氧化还原对在硅氧烷体系上的应用允许将粘弹性和特征复制能力与商业印模材料进行比较。发现硅氧烷体系与用于应变恢复和应力松弛的商业材料相匹配,并且超过其复制性能,尽管它需要更大的整体强度才能在临床环境中充分发挥作用。

著录项

  • 作者

    Cole Megan Alayne;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
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  • 入库时间 2022-08-20 20:44:29

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