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Production and cross-sectional characterization of aligned co-electrospun hollow microfibrous bulk assemblies

机译:对齐的共电纺丝中空微纤维散装组件的生产和横截面表征

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摘要

The development of co-electrospun (co-ES) hollow microfibrous assemblies of an appreciable thickness is critical for many practical applications, including filtration membranes and tissue-mimicking scaffolds. In this study, thick uniaxially aligned hollow microfibrous assemblies forming fiber bundles and strips were prepared by co-ES of polycaprolactone (PCL) and polyethylene oxide (PEO) as shell and core materials, respectively. Hollow microfiber bundles were deposited on a fixed rotating disc, which resulted in non-controllable cross-sectional shapes on a macroscopic scale. In comparison, fiber strips were produced with tuneable thickness and width by additionally employing an x–y translation stage in co-ES. Scanning electron microscopy (SEM) images of cross-sections of fiber assemblies were analyzed to investigate the effects of production time (from 0.5 h to 12 h), core flow rate (from 0.8 mL/h to 2.0 mL/h) and/or translation speed (from 0.2 mm/s to 5 mm/s) on the pores and porosity. We observed significant changes in pore size and shape with core flow rate but the influence of production time varied; five strips produced under the same conditions had reasonably good size and porosity reproducibility; pore sizes didn't vary significantly from strip bottom to surface, although the porosity gradually decreased and then returned to the initial level.
机译:对于许多实际应用,包括过滤膜和模仿组织的支架,厚度显着的共电纺(co-ES)中空微纤维组件的开发至关重要。在这项研究中,分别通过聚己内酯(PCL)和聚环氧乙烷(PEO)的共电ES作为壳和芯材料,制备了形成纤维束和条带的厚单轴排列中空微纤维组件。中空微纤维束沉积在固定的转盘上,从而导致宏观尺寸的横截面形状无法控制。相比之下,通过在co-ES中额外采用x-y平移台,可以生产出厚度和宽度可调的纤维条。分析了纤维组件横截面的扫描电子显微镜(SEM)图像,以研究生产时间(从0.5h至12h),核心流速(从0.8mL / h至2.0mL / h)和/或孔和孔隙的平移速度(从0.2mm / s到5mm / s)。我们观察到孔径和形状随堆芯流速的变化而显着变化,但生产时间的影响各不相同。在相同条件下生产的五种试纸具有相当好的尺寸和孔隙再现性;尽管孔隙率逐渐降低,然后又回到初始水平,但从条带底部到表面的孔径没有明显变化。

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