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首页> 外文期刊>Journal of Applied Polymer Science >Zein-based ultrathin fibers containing ceramic nanofillers obtained by electrospinning. I. morphology and thermal properties
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Zein-based ultrathin fibers containing ceramic nanofillers obtained by electrospinning. I. morphology and thermal properties

机译:包含通过电纺丝获得的陶瓷纳米填料的玉米蛋白基超细纤维。一,形貌和热性能

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摘要

This work presents the first results on the development and characterization of novel nanobiocomposite fibers prepared by electrospinning of zein/clay mixtures (from 99/1 to 75/25 wt/wt) from ethanol-based solutions. To do so, commercial ceramic materials of different nature, such as organomodified and unmodified mica, kaolinite, montmorillonite, and zeolite were employed and compared. A significant decrease in fiber diameter was observed as the clay fraction increased in the hybrid material. The highest clay contents also produced fibers but with extended beaded regions. All fillers nanodispersed well in the fibers at low loadings but unmodified mica particles were also seen excluded from the fibers, most likely due to excessive size. Surprisingly, the ceramic laminar structures, i.e. the phyllosilicates, were all seen to embed within the ultrathin fibers in what appears as an unreported rolled morphology due to the extensional forces generated by the electrospinning process. Electrospun nanobiocomposite fibers with optimal ceramic nanoparticle contents are currently investigated as an adequate procedure to prepare naturally occurring composite additives, coatings, and interlayers with enhanced performance in terms of mechanical, thermal, barrier, and control release properties for packaging, active packaging, biomedical, and pharmaceutical applications.
机译:这项工作提出了关于新的纳米生物复合纤维的开发和表征的第一个结果,该纤维是由乙醇基溶液中的玉米醇溶蛋白/粘土混合物(99/1至75/25 wt / wt)进行电纺丝而成的。为此,使用并比较了不同性质的市售陶瓷材料,例如有机改性和未改性的云母,高岭石,蒙脱石和沸石。随着杂化材料中粘土分数的增加,观察到纤维直径的显着减小。最高的粘土含量也产生了纤维,但具有延伸的串珠区域。所有填充剂在低负荷下均能很好地纳米分散在纤维中,但未改性的云母颗粒也被排除在纤维之外,这很可能是由于尺寸过大。出乎意料的是,由于电纺丝过程产生的拉伸力,陶瓷层状结构,即层状硅酸盐都被包埋在超薄纤维中,呈未报道的轧制形态。目前已研究了具有最佳陶瓷纳米粒子含量的电纺纳米生物复合纤维,作为制备天然复合添加剂,涂层和中间层的适当方法,这些复合添加剂,涂层和中间层的机械,热,阻隔和控制释放性能在包装,活性包装,生物医学,和制药应用。

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