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Electrospun Polymer Nanofibers Reinforced by Tannic Acid/Fe+++ Complexes

机译:单宁酸/ Fe +++复合物增强的电纺聚合物纳米纤维

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摘要

We report the successful preparation of reinforced electrospun nanofibers and fibrous mats of polyvinyl alcohol (PVA) via a simple and inexpensive method using stable tannic acid (TA) and ferric ion (Fe+++) assemblies formed by solution mixing and pH adjustment. Changes in solution pH change the number of TA galloyl groups attached to the Fe+++ from one (pH < 2) to two (3 < pH < 6) to three (pH < 7.4) and affect the interactions between PVA and TA. At pH ~ 5.5, the morphology and fiber diameter size (FDS) examined by SEM are determinant for the mechanical properties of the fibrous mats and depend on the PVA content. At an optimal 8 wt % concentration, PVA becomes fully entangled and forms uniform nanofibers with smaller FDS (p < 0.05) and improved mechanical properties when compared to mats of PVA alone and of PVA with TA (p < 0.05). Changes in solution pH lead to beads formation, more irregular FDS and poorer mechanical properties (p < 0.05). The Fe+++ inclusion does not alter the oxidation activity of TA (p > 0.05) suggesting the potential of TA-Fe+++ assemblies to reinforce polymer nanofibers with high functionality for use in diverse applications including food, biomedical and pharmaceutical.
机译:我们报告了通过简单且廉价的方法,使用稳定的鞣酸(TA)和三价铁离子(Fe +++ )组件成功地制备了增强的电纺纳米纤维和聚乙烯醇(PVA)纤维毡的方法溶液混合和pH调节。溶液pH值的变化将与Fe +++ 相连的TA没食子酰基的数量从一个(pH <2)变为两个(3 H <6)到三个(pH <7.4)并影响PVA和TA之间的相互作用。在pH〜5.5时,通过SEM检查的形态和纤维直径尺寸(FDS)是决定纤维毡的机械性能的因素,并取决于PVA含量。与单独的PVA垫和带有TA的PVA垫相比,在最佳的8 wt%浓度下,PVA会完全缠结并形成均匀的纳米纤维,具有较小的FDS(p <0.05)和改善的机械性能。溶液pH值的变化导致珠子形成,更不规则的FDS和较差的机械性能(p <0.05)。 Fe +++ 夹杂物不会改变TA的氧化活性(p> 0.05),表明TA-Fe +++ 组件可增强高浓度聚合物纳米纤维用于食品,生物医学和制药等各种应用的功能。

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