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Melt coaxial electrospinning: A versatile method for the encapsulation of solid materials and fabrication of phase change nanofibers

机译:熔融同轴静电纺丝:一种用于固体材料封装和相变纳米纤维制造的通用方法

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摘要

We have developed a method based on melt coaxial electrospinning for fabricating phase change nanofibers consisting of long-chain hydrocarbon cores and composite sheaths. This method combines melt electrospinning with a coaxial spinneret and allows for nonpolar solids such as paraffins to be electrospun and encapsulated in one step. Shape-stabilized, phase change nanofibers have many potential applications as they are able to absorb, hold, and release large amounts of thermal energy over a certain temperature range by taking advantage of the large heat of fusion of long-chain hydrocarbons. We have focused on compounds with melting points near room temperature (octadecane) and body temperature (eicosane) as these temperature ranges are most valuable in practice. We have produced thermally stable, phase change materials up to 45 wt % octadecane, as measured by differential scanning calorimetry. In addition, the resultant fibers display novel segmented morphologies for the cores due to the rapid solidification of the hydrocarbons driven by evaporative cooling of the carrier solution. Aside from the fabrication of phase change nanofibers, the melt coaxial method is promising for applications related to microencapsulation and controlled release of drugs.
机译:我们已经开发了一种基于熔融同轴电纺丝的方法来制造由长链烃核和复合材料鞘组成的相变纳米纤维。该方法将熔融电纺丝与同轴喷丝头相结合,并允许一步纺出非极性固体(如石蜡)并进行封装。形状稳定的相变纳米纤维具有许多潜在的应用,因为它们能够利用长链碳氢化合物的大量熔化热,在一定温度范围内吸收,保持和释放大量热能。我们专注于熔点接近室温(十八烷)和体温(二十二烷)的化合物,因为这些温度范围在实践中最有价值。通过差示扫描量热法测量,我们已经生产了热稳定的,相变材料,其含量高达18 wt%十八烷。另外,由于由载体溶液的蒸发冷却驱动的烃的快速固化,所得的纤维对芯显示出新颖的分段形态。除了制造相变纳米纤维以外,熔融同轴法有望用于与微囊化和药物控释有关的应用。

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