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Atomic force microscopy visualization of hard segment alignment in stretched polyurethane nanofibers prepared by electrospinning

机译:通过静电纺丝制备的拉伸聚氨酯纳米纤维中硬链段排列的原子力显微镜可视化

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摘要

Molecular-level orientation within nanofibers has been attracting attention as a tool for controlling and designing highly functional nanofibers. In this study, we used atomic force microscopy to visualize the phase separation between soft and hard segments on a polyurethane (PU) nanofiber surface prepared by electrospinning. Furthermore, the stretched nanofibers prepared with a high-speed rotating collector were found to have a different phase distribution in the phase-separated structure, with the hard segment domains aligned to the fiber axis. In contrast, unstretched PU nanofibers prepared without rotation were observed to have nonuniformly distributed segments. These results indicate that the application of an intense elongation force along the nanofiber axis with a rotating mandrel collector changed the distribution of segment alignments.
机译:作为控制和设计高功能纳米纤维的工具,纳米纤维内的分子水平取向已引起关注。在这项研究中,我们使用原子力显微镜观察通过电纺制备的聚氨酯(PU)纳米纤维表面上软链段和硬链段之间的相分离。此外,发现用高速旋转收集器制备的拉伸纳米纤维在相分离结构中具有不同的相分布,并且硬链段域与纤维轴对齐。相反,观察到未经旋转制备的未拉伸PU纳米纤维具有不均匀分布的链段。这些结果表明,在旋转的心轴收集器的作用下,沿着纳米纤维轴施加了很强的伸长力,从而改变了片段排列的分布。

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