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首页> 外文期刊>Journal of the European Ceramic Society >Citrate-nitrate auto-combustion synthesis of perovskite-type nanopowders: A systematic approach
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Citrate-nitrate auto-combustion synthesis of perovskite-type nanopowders: A systematic approach

机译:钙钛矿型纳米粉的柠檬酸-硝酸盐自动燃烧合成:一种系统方法

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摘要

Citrate-nitrate auto-combustion synthesis is used to prepare an iron, a cobalt and a cerium-perovskite. The influence of different synthesis conditions on the combustion process, phase composition, textural and morphological properties is studied in detail by X-ray diffraction, nitrogen adsorption and scanning electron microscopy. Results show that the combustion intensity increases from iron, to cerium, to cobalt-perovskite. Conversely, the combustion intensity decreases and thus the safety and the gain of the combustion process increase by using high fuel/oxidant ratios, low pH values or combustion reactors with high heat dispersion capacity.High fuel/oxidant ratios increase particle size and may enhance dopant segregation. Low citric acid/metal nitrates ratios may cause precipitation of the most insoluble compounds or segregation of the dopant. High citric acid/metal nitrates ratios increase the formation temperature of the perovskite-type structure. Low pH values are deleterious for the phase composition and/or for the morphology of the final product, although at high pH values dopant segregation may occur.
机译:柠檬酸-硝酸盐自燃合成用于制备铁,钴和铈钙钛矿。通过X射线衍射,氮吸附和扫描电子显微镜详细研究了不同合成条件对燃烧过程,相组成,组织和形态性能的影响。结果表明,燃烧强度从铁到铈,再到钴-钙钛矿。相反地​​,通过使用高燃料/氧化剂比,低pH值或具有高散热能力的燃烧反应器,燃烧强度降低,从而增加了燃烧过程的安全性和增益,高燃料/氧化剂比增加了颗粒尺寸并可能增加了掺杂剂隔离。柠檬酸/金属硝酸盐的比率低可能导致最不溶的化合物沉淀或掺杂剂偏析。柠檬酸/金属硝酸盐的比例高会增加钙钛矿型结构的形成温度。低pH值对相组成和/或最终产品的形态有害,尽管在高pH值下可能会发生掺杂剂偏析。

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