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Ionic liquid-hydroxide-mediated low-temperature synthesis of high-entropy perovskite oxide nanoparticles

机译:离子liquid-hydroxide-mediated低温熵值的合成钙钛矿氧化物纳米粒子

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High-entropy perovskite oxides (HEPOs) are attracting significant attention due to their unique structures, unprecedented properties and great application potential in many fields, while available synthetic methods have many shortcomings; so it is still a challenge to develop a simple, low-cost and environment-friendly synthetic strategy for HEPOs. Herein, a novel synthetic strategy is reported for HEPOs using an ionic liquid (IL)-hydroxide-mediated technique at a low temperature and normal atmospheric pressure. The synthesized HEPOs, including Ba(FeNbTiZrTa)O-3, Ba(MnNbTiZrTa)O-3, Ba(FeSnTiZrTa)O-3 and Ba(FeVTiZrTa)O-3, exhibit a cubic structure and a dispersed nanoparticle morphology (particle size of 20-60 nm). The formation process of HEPOs in an IL-KOH system can be described as follows: first, B-site metal source compounds are dissolved in IL-KOH medium to form hydroxyl complexes; second, the complexes further dehydrate, condensate and react with Ba2+ ions to form the crystal nuclei of HEPOs under the synergistic effect of reaction temperature and basicity; third, the growth of HEPO nuclei is completed by the Ostwald ripening process. In these processes, KOH not only plays a role as a solvent, but also provides sufficient OH- concentration for the formation and condensation of B-site metal hydroxyl complexes, while the IL also makes significant contributions: first, a lower reaction temperature and lower dosage of KOH are achieved by the use of the IL; second, the IL with good dissolving ability and low surface tensions can promote the nucleation rate of HEPOs and improve the Ostwald ripening process; third, the compact adsorption of the IL on the surface of products ensures a small particle size and high dispersion of HEPO nanoparticles to a certain extent. In brief, the technique provides an innovative, low-cost, simple and nontoxic strategy for the synthesis of HEPOs, which can be extended to other high-entropy materials.
机译:熵值钙钛矿氧化物(HEPOs)由于他们得到了大量关注独特的结构,前所未有的属性和在许多领域巨大的应用潜力,而可用的合成方法有很多缺点;开发一个简单,低成本环保合成策略HEPOs。报告HEPOs使用离子液体(IL) -hydroxide-mediated技术低正常温度和大气压力。合成HEPOs,包括Ba (FeNbTiZrTa) O-3,Ba (FeVTiZrTa) O-3,展览和一个一立方结构分散的纳米颗粒形态(颗粒大小20海里)。IL-KOH系统可以描述如下:首先,b区域金属化合物来源溶解在IL-KOH介质形成羟基情结;脱水、冷凝和与媒体+离子反应的晶体核HEPOs下反应温度和协同效应碱度;奥斯特瓦尔德成熟完成过程。这些过程,KOH不仅扮演了一个角色溶剂,而且还提供了足够的哦,形成和凝结的浓度b区域金属羟基复合物,而也做出了重大贡献:首先,较低的反应温度和较低的剂量KOH通过IL的使用;IL和良好的溶解能力低表面张力能促进成核率HEPOs和改善奥斯特瓦尔德成熟过程;产品表面可以确保一个小颗粒大小和高色散HEPO纳米颗粒在一定程度上。技术提供了一个创新、低成本、简单、无毒的合成策略HEPOs,可以扩展到其他熵值的材料。

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