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Synthesis of alumina and aluminum nitride layers on a graphitic substrate via a sol-gel route.

机译:通过溶胶-凝胶途径在石墨基材上合成氧化铝和氮化铝层。

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In this study, our objective is to deposit an alumina or an aluminum nitride layer on a turbostratic carbon substrate. The coatings are synthesized via a sol-gel route followed by a heat treatment in order to obtain a-alumina or hexagonal aluminum nitride by carbothermal nitridation of alumina. The synthesis of such layers on carbon substrates is not reported in literature.Several slurries were elaborated using various solvents and catalysts, and aluminum-tri-sec-butoxide as an aluminum precursor. The coating is obtained by dropping the substrate in the sol. After drying and pyrolysis, the amorphous alumina layer obtained has a thickness ranging from 500 nm to 1 urn. The material is finally heat treated. Several treatment conditions were evaluated.A thermodynamic study of the Al-C-O-N system will be drawn, and the composition of the synthesized sol-gel and heat treatment parameters will be detailed. Then, the layer's morphology and structure will be characterized thanks to Scanning Electron Microscopy and X-Ray Diffraction analyses. The impact of heat treatment parameters will be discussed and experimental results will be compared to the theoretical thermodynamic results.
机译:在这项研究中,我们的目标是在透层碳衬底上沉积氧化铝或氮化铝层。涂层通过溶胶-凝胶途径合成,然后进行热处理,以通过氧化铝的碳热氮化获得α-氧化铝或六方氮化铝。在碳基材上合成这种层的方法尚未见文献报道。使用各种溶剂和催化剂,以三仲丁醇铝作为铝前体,制备了几种浆料。通过将基材滴入溶胶中来获得涂层。在干燥和热解之后,获得的无定形氧化铝层的厚度为500nm至1μm。最终将材料进行热处理。对几种处理条件进行了评估,将对Al-C-O-N体系进行热力学研究,并详细说明合成的溶胶-凝胶的组成和热处理参数。然后,将通过扫描电子显微镜和X射线衍射分析来表征该层的形态和结构。将讨论热处理参数的影响,并将实验结果与理论热力学结果进行比较。

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