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Molecular weight distribution of the methyl methacrylate (MMA) polymer separated from the MMA‐grafted silk fiber

机译:甲基丙烯酸甲酯(MMA)聚合物从MMA接枝丝纤维中分离出来的分子量分布

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AbstractThe molecular weight distribution of poly‐methyl methacrylate (poly‐MMA) chains separated from MMA‐grafted silk fibers obtained by using potassium persulfate (KPS) and tri‐n‐butylborane (TBB) as initiator of the graft‐copolymerization reaction have been examined by gel permeation chromatography (GPC). GPC elution pattern of poly‐MMA chains shows a bimodal molecular weight distribution. The two peaks have been identified as heavy and light component. The average molecular weight of the heavy component ranges from 48.5 to 200 kD for poly‐MMA copolymerized by the KPS reaction system and from 336 to 816 kD for the poly‐MMA copolymerized by the TBB reaction system. The light component has an average molecular weight lower than 1,000 D and its value is almost similar in all the samples examined. Scanning electron microscopy (SEM) analysis revealed the presence of MMA oligomers formed on the fiber surface during grafting. The molar ratio between poly‐MMA chains and silk fibroin attains a constant value that seems to be specific for a certain reaction system. A linear correlation has been observed between the weight gain and the average molecular weight of the poly‐MMA chains. These findings suggest the effect of grafting parameters on the molecular weight and molecular weight distribution of the grafted polymer, as well as its influence on the physical properties and textile performances of MM
机译:摘要 采用凝胶渗透色谱(GPC)技术研究了以过硫酸钾(KPS)和三正丁基硼烷(TBB)为引发剂的MMA接枝丝纤维分离的聚甲基丙烯酸甲酯(poly-MMA)链的分子量分布。poly-MMA链的GPC洗脱图谱显示出双峰分子量分布。这两个峰已被确定为重和轻成分。对于由KPS反应系统共聚的聚MMA,重组分的平均分子量范围为48.5至200 kD,对于由TBB反应系统共聚的聚MMA,重组分的平均分子量范围为336至816 kD。轻组分的平均分子量低于 1,000 D,其值在所有检查的样品中几乎相似。扫描电子显微镜(SEM)分析显示,在接枝过程中,纤维表面存在MMA低聚物。poly-MMA链和丝素蛋白之间的摩尔比达到一个恒定值,该值似乎对某个反应系统具有特异性。在重量增加和poly-MMA链的平均分子量之间观察到线性相关性。这些发现表明了接枝参数对接枝聚合物分子量和分子量分布的影响,以及其对MM物理性能和纺织性能的影响

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