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Core–Shell Electrospun Hollow Aluminum Oxide Ceramic Fibers

机译:核壳电纺中空氧化铝陶瓷纤维

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In this work, core–shell electrospinning was employed as a simple method for the fabrication of composite coaxial polymer fibers that became hollow ceramic tubes when calcined at high temperature. The shell polymer solution consisted of polyvinyl pyrollidone (PVP) in ethanol mixed with an aluminum acetate solution to act as a ceramic precursor. The core polymer was recycled polystyrene to act as a sacrificial polymer that burned off during calcination. The resulting fibers were analyzed with X-ray diffraction (XRD) and energy dispersive spectroscopy (EDS) to confirm the presence of gamma-phase aluminum oxide when heated at temperatures above 700 °C. The fiber diameter decreased from 987 ± 19 nm to 382 ± 152 nm after the calcination process due to the polymer material being burned off. The wall thickness of these fibers is estimated to be 100 nm.
机译:在这项工作中,采用核壳电纺丝作为制造复合同轴聚合物纤维的简单方法,该复合纤维在高温下煅烧后成为空心陶瓷管。壳聚合物溶液由乙醇中的聚乙烯吡咯烷酮(PVP)与乙酸铝溶液混合以充当陶瓷前体组成。芯聚合物是再循环的聚苯乙烯,用作在煅烧过程中燃烧掉的牺牲聚合物。用X射线衍射(XRD)和能量色散光谱(EDS)分析所得的纤维,以确认在高于700°C的温度下加热时γ相氧化铝的存在。在煅烧过程之后,由于烧掉了聚合物材料,纤维直径从987±19 nm减小到382±152 nm。这些纤维的壁厚估计为100nm。

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