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ROMP-based polymer composites and biorenewable rubbers.

机译:基于ROMP的聚合物复合材料和生物可再生橡胶。

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This research is divided into two related topics. In the first topic, the synthesis and characterization of novel composite materials reinforced with MWCNTs by ring-opening metathesis polymerization (ROMP) is reported for two ROMP based monomers: dicyclopentadiene (DCPD) and 5-ethylidene-2-norbornene (ENB). Homogeneous dispersion of MWCNTs in the polymer matrices is achieved by grafting norbornene moieties onto the nanotube surface. For the DCPD-based system, the investigation of mechanical properties of the composites shows a remarkable increase of tensile toughness with just 0.4 wt % of functionalized MWCNTs (f-MWCNTs). To our knowledge, this represents the highest toughness enhancement efficiency in thermosetting composites ever reported. DMA results show that there is a general increase of thermal stability (T g) with the addition of f-MWCNTs, which means that covalently bonded f-MWCNTs can reduce the local chain mobility of the matrix by interfacial interactions. The ENB system also shows significant enhancement of the toughness using just 0.8 wt % f-MWCNTs. These results indicate that the ROMP approach for polyENB is also very effective.;The second topic is an investigation of the biorenewable rubbers synthesized by the tandem ROMP and cationic polymerization. The resin consists of a norbornenyl-modified linseed oil and a norbornene diester. Characterization of the bio-based rubbers includes dynamic mechanical analysis, tensile testing, and thermogravimetric analysis. The experimental results show that there is a decrease in glass transition temperature and slight increase of elongation with increased diester loading.
机译:这项研究分为两个相关主题。在第一个主题中,报道了两种基于ROMP的单体:双环戊二烯(DCPD)和5-亚乙基-2-降冰片烯(ENB),通过开环复分解聚合(ROMP)合成和表征了用MWCNTs增强的新型复合材料。 MWCNT在聚合物基质中的均匀分散是通过将降冰片烯部分接枝到纳米管表面上实现的。对于基于DCPD的系统,复合材料的机械性能研究表明,仅0.4重量%的官能化MWCNT(f-MWCNT),拉伸韧性显着提高。据我们所知,这是有史以来报道的热固性复合材料最高的韧性增强效率。 DMA结果表明,添加f-MWCNT可以使热稳定性(T g)普遍提高,这意味着共价键合的f-MWCNT可以通过界面相互作用降低基质的局部链迁移率。仅使用0.8重量%的f-MWCNT,ENB系统也显示出韧性的显着提高。这些结果表明,聚ENB的ROMP方法也是非常有效的。第二个课题是对通过串联ROMP和阳离子聚合合成的生物可再生橡胶的研究。该树脂由降冰片烯基改性的亚麻籽油和降冰片烯二酯组成。生物基橡胶的表征包括动态力学分析,拉伸测试和热重分析。实验结果表明,随着二酯负载的增加,玻璃化转变温度降低,伸长率略有增加。

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