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首页> 外文期刊>Journal of Applied Polymer Science >Cross-linked and uncross-linked biodegradable nanocomposites. I. Nonisothermal crystallization kinetics and gas permeability
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Cross-linked and uncross-linked biodegradable nanocomposites. I. Nonisothermal crystallization kinetics and gas permeability

机译:交联和未交联的生物可降解纳米复合材料。一,非等温结晶动力学和透气性

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Various nanocomposites of poly(butylene succinates) (PBS) with different ratios of organically modified layered silicates (OMLS) were prepared. Moreover, such PBS nanocomposites cross-linked by dicumyl peroxide (DCP) were also prepared in this work. Effects of cross-linking and OMLS on nonisothermal crystallization kinetics and the gas permeability of PBS samples were investigated further. WAXD indicates that the layers of clay were intercalated by the modifiers, and that the interlayer distance of OMLS in the nanocomposites could be expanded to about 2.96 nm. The results of DSC analysis revealed that the crystallization temperature of nanocomposites shifted to the lower temperature with the increase of OMLS content. With the addition of OMLS, crystallinity was decreased, whereas the half-life of crystallization was increased. On the other hand, even the cross-linked effects also increased the half-life of crystallization of the materials, but did not necessarily decrease crystallinity in all cases. Moreover, the PBS/OMLS nanocomposites showed a 23.87-46.64% decrease in permeability of oxygen when compared with the pristine PBS sample. Yet, the crosslinked nanocomposites exhibited decrements of 6.3839.53%. This indicates that the gas permeability of PBS was more effectively depressed by the addition of OMLS than by the cross-linking reaction. The cross-linked structure of polymer seemed not to be very effective in decreasing the gas permeability of FIBS. (C) 2008 Wiley Periodicals, Inc. J Appl Polym Sci 110: 1069-1079, 2008
机译:制备了不同比例的有机改性层状硅酸盐(OMLS)的聚丁二酸丁二醇酯(PBS)的各种纳米复合材料。此外,在这项工作中还制备了通过过氧化二枯基(DCP)交联的这种PBS纳米复合材料。进一步研究了交联和OMLS对PBS样品非等温结晶动力学和透气性的影响。 WAXD表明粘土层被改性剂插入,并且纳米复合材料中OMLS的层间距离可以扩大到约2.96nm。 DSC分析结果表明,随着OMLS含量的增加,纳米复合材料的结晶温度逐渐降低。随着OMLS的加入,结晶度降低,而结晶的半衰期增加。另一方面,即使是交联作用也增加了材料结晶的半衰期,但不一定在所有情况下都降低了结晶度。此外,与原始PBS样品相比,PBS / OMLS纳米复合材料的氧气渗透率降低了23.87-46.64%。然而,交联的纳米复合材料表现出6.3839.53%的降低。这表明通过添加OML​​S比通过交联反应更有效地降低了PBS的透气性。聚合物的交联结构似乎在降低FIBS的透气性方面不是很有效。 (C)2008 Wiley Periodicals,Inc. J Appl Polym Sci 110:1069-1079,2008

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