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首页> 外文期刊>Journal of biomaterials science >Diallyl tartrate as a multifunctional monomer for bio-polymer synthesis
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Diallyl tartrate as a multifunctional monomer for bio-polymer synthesis

机译:酒石酸二烯丙酯作为生物聚合物合成的多功能单体

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This paper introduces the use of a diallyl dicarboxylate compound, diallyl tartrate, as a monomer in the synthesis of a biodegradable polymer. Although the allyl functional group is generally known for not being able to polymerize to high conversions, it was found in this study that by using photoinitiation instead of thermal initiation, a highly cross-linked polymer could be obtained from the polymerization of diallyl tartrate in a relatively short time. The details of the polymerization reaction were investigated in detail using differential photocalorimetry (DPC). The final thermoset obtained was shown to be completely amorphous and rigid, with a glass transition temperature of approx. 90°C and a storage modulus of approx. 1 GPa at room temperature, via thermal analysis. It was also found to biodegrade in vitro via hydrolysis of its ester groups at a moderate rate, taking nearly 12 weeks to lose 50% of its mass. Both the photo-polymerized material and its water-soluble degradation products were further shown to be non-cytotoxic to fibroblast cells over at least 24 h of exposure. These results aim to initiate the use of this class of monomers in the synthesis of new polymers with tailored properties for biomaterial applications.
机译:本文介绍了二烯丙基二羧酸酯化合物酒石酸二烯丙基酯在生物可降解聚合物合成中作为单体的用途。尽管众所周知烯丙基官能团不能聚合成高转化率,但在这项研究中发现,通过使用光引发代替热引发,可以从酒石酸二烯丙基酯的聚合中获得高度交联的聚合物。时间相对较短。使用差示量热法(DPC)详细研究了聚合反应的细节。所获得的最终热固性材料显示为完全无定形和刚性的,玻璃化转变温度大约为0。 90°C,储能模量约通过热分析,室温下为1 GPa。还发现它可通过其酯基的适度水解体外生物降解,耗时近12周损失了其质量的50%。进一步显示,光聚合材料及其水溶性降解产物在至少暴露24小时后对成纤维细胞无细胞毒性。这些结果旨在启动此类单体在具有适合生物材料应用性能的新型聚合物的合成中的使用。

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