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首页> 外文期刊>International Journal of Quantum Chemistry >Nanorods of manganese oxides: Synthesis, characterization and catalytic application
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Nanorods of manganese oxides: Synthesis, characterization and catalytic application

机译:锰氧化物的纳米棒:合成,表征和催化应用

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Single-crystalline nanorods of beta-MnO2, alpha-Mn2O3 and Mn3O4 were successfully synthesized via the heat-treatment of gamma-MnOOH nanorods, which were prepared through a hydrothermal method in advance. The calcination process of gamma-MnOOH nanorods was studied with the help of Thermogravimetric analysis and X-ray powder diffraction. When the calcinations were conducted in air from 250 to 1050 degrees C, the precursor gamma-MnOOH was first changed to beta-MnO2, then to alpha-Mn2O3 and finally to Mn3O4. When calcined in N-2 atmosphere, gamma-MnOOH was directly converted into Mn3O4 at as low as 500 degrees C. Transmission electron microscopy (TEM) and high-resolution TEM were also used to characterize the products. The obtained manganese oxides maintain the one-dimensional morphology similar to the precursor gamma-MnOOH nanorods. Further experiments show that the as-prepared manganese oxide nanorods have catalytic effect on the oxidation and decomposition of the methylene blue (MB) dye with H2O2(0 (C) 2005 Elsevier Inc. All rights reserved.
机译:通过预先通过水热法制备的γ-MnOOH纳米棒的热处理,成功合成了β-MnO2,α-Mn2O3和Mn3O4的单晶纳米棒。借助热重分析和X射线粉末衍射研究了γ-MnOOH纳米棒的煅烧过程。当在250至1050摄氏度的空气中进行煅烧时,前驱体γ-MnOOH首先变为β-MnO2,然后变为α-Mn2O3,最后变为Mn3O4。当在N-2气氛中煅烧时,γ-MnOOH在低至500摄氏度的条件下直接转化为Mn3O4。还使用透射电子显微镜(TEM)和高分辨率TEM表征产物。所获得的锰氧化物保持与前体γ-MnOOH纳米棒相似的一维形态。进一步的实验表明,所制备的锰氧化物纳米棒对H2O2(0(C)2005 Elsevier Inc.)氧化亚甲基蓝(MB)染料具有催化作用。保留所有权利。

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