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The effect of magnesium compounds (MgO and MgAl2O4) on the synthesis of Lanthanum magnesium hexaaluminate (LaMgAl11O19) by solid-state reaction method

机译:镁化合物(MgO和MgAl2O4)对固态反应法合成镧六氧铝(Lamgal11019)的合成

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摘要

In the present study, the lanthanum magnesium hexaaluminate (LaMgAl11O19)(LaMA) powder was synthesized by the solid state reaction method using two types of magnesium compounds, including magnesium oxide (MgO) and magnesium aluminate (MgAl2O4) spinel (MAS). The effect of substitution of magnesium oxide with MAS on the synthesis temperature, intermediate compounds and morphology of synthesized powders were investigated. The microstructural results showed that the intermediate compounds of lanthanum aluminate (LaAlO3), aluminum oxide and MAS were formed in the presence of magnesium oxide, whereas in the latter case, the LaAlO3 intermediate phase was not observed and La4Al2MgO10 was formed at about 810 degrees C. Also in both cases, a single LaMA phase with the platelet-like morphology was formed. The thickness of the LaMA platelets decreased from 300 nm to 125 nm and the synthesis temperature increased from 1330 degrees C to 1355 degrees C, by replacing MgO with MAS.
机译:在本研究中,通过使用两种类型的镁化合物(包括氧化镁(MgO)和铝酸镁(MgAl2O4)尖晶石(MAS),通过固态反应方法合成镧六氧化镁(Lamgal11O19)(喇嘛)粉末合成。 研究了氧化镁与MAS对合成温度,中间体化合物和合成粉末形态的影响。 微观结构结果表明,在氧化镁存在下,在氧化镁存在下形成镧铝酸铝,氧化铝和Mas的中间体化合物,而在后一种情况下,未观察到LaAlO 3中间相,并且在约810℃下形成La4Al2MGO10 。在这两种情况下,形成了具有血小板状形态的单个喇嘛阶段。 喇嘛血小板的厚度从300nm达到125nm降低,合成温度通过用mas替换MgO来从1330℃升高到1355℃。

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