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Synthesis of Mesoporous Metal Oxides by Structure Replication: Thermal Analysis of Metal Nitrates in Porous Carbon Matrices

机译:通过结构复制合成介孔金属氧化物:多孔碳基质中金属硝酸盐的热分析

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摘要

A variety of metal nitrates were filled into the pores of an ordered mesoporous CMK-3 carbon matrix by solution-based impregnation. Thermal conversion of the metal nitrates into the respective metal oxides, and subsequent removal of the carbon matrix by thermal combustion, provides a versatile means to prepare mesoporous metal oxides (so-called nanocasting). This study aims to monitor the thermally induced processes by thermogravimetric analysis (TGA), coupled with mass ion detection (MS). The highly dispersed metal nitrates in the pores of the carbon matrix tend to react to the respective metal oxides at lower temperature than reported in the literature for pure, i.e., carbon-free, metal nitrates. The subsequent thermal combustion of the CMK-3 carbon matrix also occurs at lower temperature, which is explained by a catalytic effect of the metal oxides present in the pores. This catalytic effect is particularly strong for oxides of redox active metals, such as transition group VII and VIII metals (Mn, Fe, Co, Ni), Cu, and Ce.
机译:通过基于溶液的浸渍,将各种金属硝酸盐填充到有序介孔CMK-3碳基质的孔中。金属硝酸盐的热转化为相应的金属氧化物,以及随后通过热燃烧除去碳基质,提供了制备介孔金属氧化物的通用手段(所谓的纳米浇铸)。这项研究旨在通过热重分析(TGA)结合质量离子检测(MS)监测热诱导过程。在碳基质的孔中高度分散的金属硝酸盐倾向于在比文献中报道的纯的,即无碳的金属硝酸盐更低的温度下与相应的金属氧化物反应。 CMK-3碳基体随后的热燃烧也在较低的温度下发生,这可以通过孔隙中存在的金属氧化物的催化作用来解释。对于氧化还原活性金属的氧化物,例如过渡族VII和VIII金属(Mn,Fe,Co,Ni),Cu和Ce,这种催化作用特别强。

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