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Biomaterials Based on Electrospun Chitosan. Relation between Processing Conditions and Mechanical Properties

机译:基于静电纺丝壳聚糖的生物材料。加工条件与机械性能之间的关系

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摘要

In this paper, it is shown that pure chitosan nanofibers and films were prepared with success in 0.5 M acetic acid as solvent using poly (ethylene oxide) (PEO) at different yields, allowing electrospinning of the blends. After processing, a neutralization step of chitosan followed by water washing is performed, preserving the initial morphology of chitosan materials. The influence of the yield in PEO in the blend on the degree of swelling and hydrophilicity of films and nanofibers is demonstrated. Then, the mechanical behavior of blended nanofibers and films used as reference are determined for small stress applied in the linear domain by DMA and by uniaxial traction up to rupture. The dried and wet states are covered for the first time. It is shown that the mechanical properties are increased when electrospinning is performed in the presence of PEO up to a 70/30 chitosan/PEO weight ratio even after PEO extraction. This result can be explained by a better dispersion of the chitosan in the presence of PEO.
机译:在本文中,表明使用聚环氧乙烷(PEO)在0.5 M乙酸中成功制备了纯壳聚糖纳米纤维和薄膜,并以不同的收率进行了纺丝。加工后,执行壳聚糖的中和步骤,然后水洗,以保留壳聚糖材料的初始形态。证明了共混物中PEO的产率对薄膜和纳米纤维的溶胀度和亲水性的影响。然后,确定了掺混纳米纤维和用作参考的薄膜的机械性能,以确定通过DMA和单轴牵引直至破裂而施加在线性域中的小应力。第一次覆盖干燥和潮湿状态。结果表明,即使在PEO萃取后,在存在PEO的情况下进行静电纺丝时,机械性能也会提高,壳聚糖/ PEO的重量比高达70/30。该结果可以通过在PEO存在下壳聚糖更好的分散来解释。

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