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Characterization and application of electrospun alumina nanofibers

机译:电纺氧化铝纳米纤维的表征与应用

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摘要

Alumina nanofibers were prepared by a technique that combined the sol–gel and electrospinning methods. The solution to be electrospun was prepared by mixing aluminum isopropoxide (AIP) in ethanol, which was then refluxed in the presence of an acid catalyst and polyvinylpyrolidone (PVP) in ethanol. The characterization results showed that alumina nanofibers with diameters in the range of 102 to 378 nm were successfully prepared. On the basis of the results of the XRD and FT-IR, the alumina nanofibers calcined at 1,100°C were identified as comprising the α-alumina phase, and a series of phase transitions such as boehmite → γ-alumina → α-alumina were observed from 500°C to 1,200°C. The pore size of the obtained γ-alumina nanofibers is approximately 8 nm, and it means that they are mesoporous materials. The kinetic study demonstrated that MO adsorption on alumina nanofibers can be seen that the pseudo-second-order kinetic model fits better than the pseudo-first-order kinetic model.
机译:氧化铝纳米纤维是通过将溶胶-凝胶法和静电纺丝法相结合的技术制备的。通过在乙醇中混合异丙醇铝(AIP)制备待电纺丝的溶液,然后在酸催化剂和聚乙烯吡咯烷酮(PVP)在乙醇中的存在下回流。表征结果表明,成功制备了直径在102到378nm之间的氧化铝纳米纤维。根据XRD和FT-IR的结果,确定在1100℃下煅烧的氧化铝纳米纤维包含α-氧化铝相,勃姆石→→γγ-氧化铝→→αα-氧化铝等一系列相变为。在500°C至1200°C的温度范围内观察到。所获得的γ-氧化铝纳米纤维的孔径约为8 nm,这意味着它们是介孔材料。动力学研究表明,MO在氧化铝纳米纤维上的吸附可以看出拟二级动力学模型比拟一级动力学模型拟合得更好。

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