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Synthesis of LaMnO_3 via a Mechanochemical Activated Process

机译:机械化学活化法合成LaMnO_3

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摘要

LaMnO_3-based perovskite oxides are typical functional materials applicable to various devices for its chemistry and physics properties. The conventional method solid-state reaction method has some drawbacks of high reaction temperature, large particle size and limited degree of chemical homogeneity. So, an easy, low cost and environmental method of synthesizing fine and homogenous powders of LaMnO_3 is required. This paper discusses the synthesis of LaMnO_3 via a mechanochemical activated process. The mixtures of La_2O_3 and Mn_2O_3 were used as starting powders. The specific surface of starting materials was measured by BET method. A planetary ball mill was used to grind the starting mixtures. During the grinding process, XRD analysis was employed to make clear the phase changes, and BET analysis was used to test the specific surface changes. After being grinded for different time, the mixtures were annealed at different temperatures. After this, the phase identification of mixtures was conducted by XRD. At the same time, a pre-mixing of starting materials with ethanol as solvent by normal ball-milling for 8 hrs was proceeded to obtain homogeneous mixture and improve the efficiency of grinding. All obtained LaMnO_3 powders via the mechanochemical activated process were characterized by SEM imaging. Finally, an optimized powder processing was proposed.
机译:基于LaMnO_3的钙钛矿氧化物因其化学和物理特性而适用于各种设备的典型功能材料。常规方法的固态反应方法具有反应温度高,粒径大和化学均一度有限的缺点。因此,需要一种合成LaMnO_3细粉和均匀粉体的简便,低成本和环保的方法。本文讨论了通过机械化学活化过程合成LaMnO_3。 La_2O_3和Mn_2O_3的混合物用作起始粉末。原料的比表面积通过BET法测定。使用行星式球磨机研磨起始混合物。在研磨过程中,使用XRD分析来明确相变,并使用BET分析来测试特定的表面变化。在研磨不同的时间之后,将混合物在不同的温度下退火。此后,通过XRD进行混合物的相鉴定。同时,通过普通球磨将原料与乙醇作为溶剂进行预混合8小时,以获得均匀的混合物并提高研磨效率。通过机械化学活化过程获得的所有LaMnO_3粉末均通过SEM成像表征。最后,提出了一种优化的粉末加工工艺。

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