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Nanocrystalline Transition-Metal Gallium Oxide Spinels from Acetylacetonate Precursors via Solvothermal Synthesis

机译:纳米晶过渡 - 金属氧化物氧化硅胶通过溶剂热合成来自乙酰丙酮酸酯前体

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摘要

The synthesis of mixed-metal spinels based on substituted γ-Ga2O3 is reported using metal acetylacetonate precursors in solvothermal reactions with alcohols as solvents at 240 °C. New oxides of Cr, Mn and Fe have been produced, all of which are formed as nanocrystalline powders, as seen by high-resolution transmission electron microscopy (HR-TEM). The first chromium-gallium mixed oxide is thus formed, with composition 0.33Ga1.87Cr0.8O4 ( = vacant site). X-ray absorption near-edge spectroscopy (XANES) at the chromium K-edge shows the presence of solely octahedral Cr3+, which in turn implies a mixture of tetrahedral and octahedral Ga3+, and the material is stable on annealing to at least 850 °C. An analogous manganese material with average chemical composition close to MnGa2O4 is shown to contain octahedral Mn2+, along with some Mn3+, but a different inversion factor to materials reported by conventional solid-state synthesis in the literature, which are known to have a significant proportion of tetrahedral Mn2+. In the case of iron, higher amounts of the transition metal can be included to give an Fe:Ga ratio of 1:1. Elemental mapping using energy dispersive X-ray spectroscopy on the TEM, however, reveals inhomogeneity in the distribution of the two metals. This is consistent with variable temperature 57Fe Mössbauer spectroscopy that shows the presence of Fe2+ and Fe3+ in more than one phase in the sample. Variable temperature magnetisation and electron paramagnetic resonance (EPR) indicate the presence of superparamagnetism at room temperature in the iron-gallium oxides.
机译:报道基于取代的γ-GA2O3的混合金属尖晶石的合成在240℃下用醇作为醇作为醇作为醇作为溶剂的金属乙酰丙酮酸酯前体。已经生产了Cr,Mn和Fe的新氧化物,所有这些都形成为纳米晶体粉末,如通过高分辨率透射电子显微镜(HR-TEM)所见。由此形成第一铬混合氧化物,其中组合物0.33ga1.87cr0.8O4(=空位)。铬k边缘的X射线吸收近边光谱(Xanes)显示出单独的八面体CR3 +的存在,这又意味着四面体和八面体Ga3 +的混合物,并且所述材料在退火上稳定至至少850℃ 。具有接近Mnga2O4的平均化学成分的类似锰材料被显示为含有八面体Mn2 +,以及一些Mn3 +,但是在文献中常规固态合成报道的材料的不同反演因子,已知有很大的比例四面体Mn2 +。在铁的情况下,可以包括较高量的过渡金属,得到Fe:Ga比为1:1。然而,在TEM上使用能量分散X射线光谱的元素映射揭示了两种金属的分布中的不均匀性。这与可变温度57FeMössbauer光谱分子一致,其显示在样品中多于一个相中Fe2 +和Fe3 +的存在。可变温度磁化和电子顺磁共振(EPR)表示在氧化镓室温度下在室温下存在超分度。

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