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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Interactions of hydrophilic plasticizer molecules with amorphous starch biopolymer-an investigation into the glass transition and the water activity behavior
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Interactions of hydrophilic plasticizer molecules with amorphous starch biopolymer-an investigation into the glass transition and the water activity behavior

机译:亲水性增塑剂分子与无定形淀粉生物聚合物的相互作用-玻璃化转变和水活度行为的研究

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In this article, we demonstrated that within a hydrophilic biopolymer-plasticizer system, the molecular "activity" of the plasticizer also influenced the extent of these interactions. We demonstrated through an analysis of crystallinity and calorimetry results that the equilibrium moisture content within the starch matrix can preferentially interact with the hydrophilic plasticizers and modify the polymer recrystallization process to an extent that the commonly acknowledged relationship between the crystallinity and the glass transition behavior is disrupted. Two plasticizers, glycerol (three -OH groups) and xylitol (five -OH groups), were selected. The water sorption isotherm of polymer samples with 5-20 wt % (dry basis) plasticizers were examined across a water activity range from ~0.11 to ~0.95 and using Guggenheim-Anderson-de Boer analysis, we compared the molar sorption enthalpies of various starch-plasticizer mixtures. Finally, the competitive plasticization between water and plasticizer molecules at different water activities was also discussed using known glass transition models. The analyses validated the antiplasticization limit for glycerol to be ~10-15 wt %, but for xylitol, its antiplasticization behavior did not manifest till 20 wt %.
机译:在本文中,我们证明了在亲水性生物聚合物-增塑剂体系中,增塑剂的分子“活性”也影响了这些相互作用的程度。通过对结晶度和量热结果的分析,我们证明了淀粉基质中的平衡水分含量可以优先与亲水性增塑剂相互作用,并在一定程度上改变了聚合物的重结晶过程,从而使结晶度和玻璃化转变行为之间公认的关系被破坏了。 。选择了两种增塑剂,甘油(三个-OH基团)和木糖醇(五个-OH基团)。在约0.11至约0.95的水活度范围内,对具有5-20 wt%(干基)增塑剂的聚合物样品的吸水等温线进行了研究,并使用Guggenheim-Anderson-de Boer分析,我们比较了各种淀粉的摩尔吸附焓。 -增塑剂混合物。最后,还使用已知的玻璃化转变模型讨论了水和增塑剂分子在不同水分活度下的竞争性增塑作用。分析证实甘油的抗塑化极限为〜10-15 wt%,但对于木糖醇,其抗塑化行为直到20 wt%才表现出来。

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