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Impact of synthetic technique on PLA-PEO-PLA physical hydrogel properties

机译:合成工艺对PLA-PEO-PLA物理水凝胶性能的影响

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Previous work has shown that the stiffness of poly (lactide)-b-poly(ethylene oxide)-b-poly(lactide) [PLA-PEO-PLA] hydrogels can be influenced by crystallinity. Those hydrogels with crystalline PLLA end blocks had a higher storage modulus (up to 1 order of magnitude) than the amorphous equivalents. All the previous work was done with polymers synthesized in the bulk. This paper reports the difference in mechanical properties when two different synthetic techniques are used-bulk and solution synthesis. Solution-synthesized polymers consistently formed stiffer hydrogels than bulk-synthesized polymers. Further investigation determined the following: crystalline polymers from solution synthesis still form stiffer gels than the amorphous analogues, but not to the extent previously reported; the solution synthesized polymers have narrower distributions, but this alone does not account for the mechanical differences. However, the presence of asymmetric triblock copolymers, which act like an effective diblock copolymer, within the bulk-synthesized materials appears to lower the overall stiffness of the gel. The impact on modulus is much larger for amorphous PLA than for crystalline PLLA end block materials. These findings suggest bulk-synthesized polymers likely have more asymmetric triblock copolymers, that decrease the relaxation time of the system, possibly by lowering the junction lifetime, or lead to dangling ends in the network, which cause a loss in mechanical properties when compared to solution-synthesized polymers.
机译:先前的工作表明,聚(丙交酯)-b-聚(环氧乙烷)-b-聚丙交酯[PLA-PEO-PLA]水凝胶的刚度会受到结晶度的影响。那些具有结晶PLLA末端嵌段的水凝胶具有比无定形等效物更高的储能模量(高达1个数量级)。以前所有的工作都是使用本体合成的聚合物完成的。本文报告了使用两种不同的合成技术(本体和溶液合成)时机械性能的差异。溶液合成的聚合物始终比本体合成的聚合物形成更坚硬的水凝胶。进一步的研究确定了以下内容:来自溶液合成的结晶聚合物仍比无定形类似物形成更坚硬的凝胶,但程度未达到先前报道的程度。溶液合成的聚合物具有较窄的分布,但是这本身并不能解决机械差异。然而,在本体合成的材料中存在不对称的三嵌段共聚物,其起有效的二嵌段共聚物的作用,似乎降低了凝胶的整体刚度。与结晶PLLA端嵌段材料相比,无定形PLA对模量的影响要大得多。这些发现表明,本体合成的聚合物可能具有更多的不对称三嵌段共聚物,这可能会降低系统的弛豫时间(可能是通过降低连接寿命,或导致网络中的末端悬空),与溶液相比会导致机械性能的下降。 -合成的聚合物。

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