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Novel Synthesis of Aluminium Oxide Nanofibers

机译:氧化铝纳米纤维的新型合成

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摘要

This report presents a novel synthesis method of alumina nanofibers at moderate conditions in aqueous systems through a surfactant-directed crystal growth process. In the presence of polyethylene oxide (PEO) surfactants, boehmite nanofibers of about 3mn thick and 30-60nm long formed from aluminium hydrate colloids. During the subsequent heating, the surfactant was evaporated and boehmite nanofibers were converted into γ-alumina nanofibers. The function of the PEO surfactant and the formation mechanism of the nanofibers are discussed. Alumina nanofibers are an ideal structural reinforcement for various nanocomposite materials. They are potential adsorbents with high adsorption capacity. Furthermore, their unique structure exhibits strong resistance to heating at high temperatures. The BET surface area of a typical sample after heating at 1200℃ is as high as 68m~2/g. This makes the material very promising as excellent substrates for catalysts of high thermal stability.
机译:该报告提出了一种新型的氧化铝纳米纤维合成方法,该合成方法是通过表面活性剂定向的晶体生长过程在水性体系中于中等条件下合成的。在聚环氧乙烷(PEO)表面活性剂的存在下,由水合铝胶体形成约300万厚,长30-60nm的勃姆石纳米纤维。在随后的加热期间,蒸发表面活性剂并将勃姆石纳米纤维转化为γ-氧化铝纳米纤维。讨论了PEO表面活性剂的功能和纳米纤维的形成机理。氧化铝纳米纤维是各种纳米复合材料的理想结构增强材料。它们是具有高吸附能力的潜在吸附剂。此外,它们独特的结构对高温加热具有很强的抵抗力。典型样品在1200℃加热后的BET表面积高达68m〜2 / g。这使得该材料非常有希望成为高热稳定性催化剂的优良载体。

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