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FeCo- Fe2CoO4/Co3O4 nanocomposites: Phase transformations as a result of thermal annealing and practical application in catalysis

机译:FeCo-Fe2COO4 / CO3O4纳米复合材料:由于热退火和催化中的实际应用而导致相变

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摘要

The results of the synthesis and subsequent phase transformations of FeCo nanowires depending on the annealing temperature are presented. An annealing temperature range of 200-800 degrees C was chosen to initialize the processes of annihilation of point defects at low temperatures, as well as phase transformations as a result of oxidation of nanostructures at high annealing temperatures. In the course of the research, a three-stage process of phase transformations was established, accompanied by oxidation of the structure followed by the formation of oxide phases of the spinel type Fe2CoO4 and Co3O4. It was found that at temperatures of 400 degrees C and 600 degrees C, the introduction of oxygen occurs nonuniformly along grain boundaries with the subsequent formation of oxide compounds, and in the case of annealing at a temperature of 800 degrees C, the oxygen distribution in the structure of nanowires becomes uniform, which indicates the complete oxidation of nanowires with isotropic the formation of oxide phases in the entire volume of nanowires. The prospects of using oxide biphasic nanowires for catalytic reduction reactions para-nitroaniline - para-phenyldiamine are shown.
机译:提出了根据退火温度的FECO纳米线的合成和随后相变的结果。选择了200-800℃的退火温度范围,以初始化低温下点缺陷的湮灭过程,以及由于高退火温度下的纳米结构氧化而导致的相变。在研究过程中,建立了三阶段转化的过程,伴随着结构的氧化,然后形成了尖晶石型Fe2COO4和CO3O4的氧化阶段。发现,在400℃和600摄氏度的温度下,在随后形成氧化物化合物的情况下,沿晶界沿晶界引入氧气的引入,并且在800℃的温度下退火的情况下,氧气分布纳米线的结构变得均匀,表明纳米线具有各向同性的纳米线氧化物相的形成在整个体积的纳米线中。显示使用氧化物双相纳米线用于催化还原反应对硝基苯胺 - 对苯基二胺的前景。

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