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Silica, carbon and boron nitride monoliths with hierarchicaludporosity prepared by spark plasma sintering process

机译:具有分级 ud的二氧化硅,碳和氮化硼整料火花等离子体烧结法制备的孔隙率

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摘要

Silica SBA-15, carbon CMK-3, boron nitride (BN), the latter synthesized from the first two compounds as templates, are mesoporous materials in the form of powders. They have a high specific surface area and an important mesoporous volume. The porosity is organized with the hexagonal symmetric space group p6mm. For selected applications, it could be interesting to preserve these characteristics with materials in a well-defined shape at a macroscopic scale (few millimeters to centimeter). Spark plasma sintering (SPS) is a well-known technique which allows to prepare monoliths with relatively mild conditions. The SPS technique has been used on these mesoporous powders without charge or with a uniaxial charge and at temperatures of 600 °C, 800 °C for silica, 1100 °C, 1300 °C for carbon and 1600 °C, 1700 °C for boron nitride during 1–5 min. The nitrogen adsorption/desorption isotherms reveal that the obtained monoliths present high specific surface area (300–500 m2/g) and important mesoporous volume. The coexistence of interconnected mesoporosity and macroporosity (with volume’s close value) was observed by SEM and TEM, while the XRD and TEM characterization show that the mesoporosity organization is partially preserved.
机译:二氧化硅SBA-15,碳CMK-3,氮化硼(BN)是由前两种化合物作为模板合成的,是粉末形式的介孔材料。它们具有高的比表面积和重要的中孔体积。孔隙由六边形对称空间群p6mm组成。对于选定的应用程序,用宏观尺寸(几毫米到厘米)的轮廓分明的形状来保留这些特性可能会很有趣。火花等离子体烧结(SPS)是一种众所周知的技术,它允许在相对温和的条件下制备整料。 SPS技术已在这些带电荷或带单轴电荷的中孔粉末上使用,温度为600°C,二氧化硅为800°C,碳为1100°C,碳为1300°C,硼为1600°C,硼为1700°C 1-5分钟内发生氮化。氮吸附/解吸等温线表明,所获得的整料具有较高的比表面积(300-500 m2 / g)和重要的中孔体积。 SEM和TEM观察到相互连通的中孔和大孔(与体积的接近值)并存,而XRD和TEM表征表明中孔组织被部分保留。

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