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Mechanochemically assisted solid state synthesis, characterization, and catalytic properties of MgWO4

机译:机械化学辅助的MgWO4的固态合成,表征和催化性能

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摘要

The synthesis of MgWO4 nanopowders was achieved by mechanically activated and following thermal treatment at 850 A degrees C of two mixtures, containing the pure oxides (MgO/WO3) and magnesium carbonate trihydrate and tungsten oxide (MgCO3 center dot 3H(2)O/WO3) as precursors. The obtained samples have been analyzed by the X-ray powder diffraction, infrared spectroscopy (IR), thermal analysis, specific surface area, transmission electron microscopy (TEM, SAED, and XEDS), and X-ray photoelectron spectroscopy. The prepared samples were modified with 0.5 wt% Pd, and the catalytic activities have been measured in reaction of complete oxidation of CO, methane, n-hexane, and toluene. It has been observed that Pd-containing samples with 3 wt% WO3 are more active than the MgWO4/Pd, the most remarkable improvement being achieved in the reaction of toluene combustion. This result is explained by the presence of the palladium in Pd4+ state (as PdO2 particles) due to the stabilization role of the WO3-matrix.
机译:MgWO4纳米粉体的合成是通过机械活化并在850 A的温度下对两种混合物进行热处理而制成的,两种混合物均包含纯氧化物(MgO / WO3)和碳酸镁三水合物和氧化钨(MgCO3中心点3H(2)O / WO3 )作为前体。通过X射线粉末衍射,红外光谱(IR),热分析,比表面积,透射电子显微镜(TEM,SAED和XEDS)和X射线光电子能谱分析获得的样品。用0.5重量%的Pd修饰制备的样品,并且在CO,甲烷,正己烷和甲苯的完全氧化的反应中测量催化活性。已经观察到,具有3重量%的WO 3的含Pd样品比MgWO 4 / Pd具有更高的活性,在甲苯燃烧反应中实现了最显着的改进。由于WO3-基体的稳定作用,钯以Pd4 +态存在(作为PdO2颗粒)解释了这一结果。

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