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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Reduction of double manganese-cobalt oxides: in situ XRD and TPR study
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Reduction of double manganese-cobalt oxides: in situ XRD and TPR study

机译:减少双重锰 - 钴氧化物:原位XRD和TPR研究

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The work reported here was aimed at determining differences in redox properties of simple and double oxides. Comparison between the reduction of double oxides (Mn,Co)(3)O-4 and simple oxides Co3O4 and Mn3O4 was performed using in situ X-ray diffraction (XRD), temperature-programmed reduction (TPR) and transmission electron microscopy (TEM). The double oxides with a ratio of cations Mn:Co = 1:1 were prepared by the coprecipitation method and contained a mixture of 50% MnCo2O4 and 50% CoMn2O4. It was shown that the mechanism of reduction of double oxides with hydrogen differs significantly from the processes occurring on simple oxides. For simple cobalt and manganese oxides, transformations Co3O4 CoO Co and Mn3O4 MnO are observed under a hydrogen atmosphere. The reduction of mixed-metal oxides occurs in two steps. In the first step, at 300-450 degrees C, (Mn,Co)(3)O-4 transforms to (Mn,Co)O solid solutions. In situ XRD under isothermal conditions illustrates that Co-rich Co2MnO4 oxide starts to be reduced to Co0.6Mn0.4O first, and then Mn-rich Mn2CoO4 passes into Mn0.6Co0.4O. In the second step, at 450-700 degrees C, the reduction of solid solutions (Mn,Co)O to metallic cobalt Co and MnO proceeds. Again, the reduction begins with transformation of Co-rich oxide with the Co0.6Mn0.4O structure. The temperature of appearance of the intermediate phase (Mn,Co)O shifts to the higher values as compared to those observed for CoO, and to lower temperatures as compared to MnO during simple oxide reduction.
机译:这里报道的工作旨在确定简单和双氧化物的氧化还原性能的差异。使用原位X射线衍射(XRD),温度编程的减少(TPR)和透射电子显微镜(TEM)进行双氧化物(Mn,CO)(3)O-4和简单氧化物CO 3 O-4和MN3O4之间的比较)。通过共沉淀法制备阳离子Mn:Co = 1:1的双氧化物,并含有50%MNCO2O4和50%CON2O4的混合物。结果表明,从简单的氧化物上发生的过程,氢气的双氧化物的减少机制显着不同。对于简单的钴和氧化锰,在氢气氛下观察转化CO 3 O4 COO CO和MN3O4 MNO。混合金属氧化物的还原在两个步骤中发生。在第一步中,在300-450℃,(Mn,Co)(3)O-4转化为(Mn,Co)O固体溶液。在等温条件下,原位XRD说明了富含CO 2 MN0.4O的富含CO 2 MN0.4O的氧化物转化为MN0.6CO0.4O进入CO 0.6MN0.4O。在第二步中,在450-700℃下,将固溶体(Mn,Co)O的降低到金属钴Co和MnO所得。同样,减少开始与CO 0.6MN0.4O结构的共聚氧化物的转化开始。与用于COO观察的那些相比,中间相(Mn,Co)O的外观温度(Mn,Co)O变为较高的值,与在简单的氧化物还原过程中与MNO相比的温度较低。

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