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首页> 外文期刊>Glass Physics and Chemistry: A Journal on the Structural, Physical, and Chemical Properties and Nature of Inorganic Glasses and Glass-Forming Melts >Influence of Microwave and Ultrasonic Treatment on the Formation of CoFe2O4 under Hydrothermal Conditions
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Influence of Microwave and Ultrasonic Treatment on the Formation of CoFe2O4 under Hydrothermal Conditions

机译:微波和超声处理对水热条件下CoFe2O4形成的影响

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The formation of CoFe2O4 nanocrystals under hydrothermal conditions at a temperature of 130°C is investigated. The average size of CoFe2O4 particles varies from 6 to 11 nm depending on the synthesis time. The hydrothermal medium is heated by two different methods, i.e., the microwave (with a synthesis time from 1 min to 2 h) and conventional (with a synthesis time from 30 min to 45 h) methods. It is demonstrated that the use of microwave heating considerably accelerates the formation of CoFe2O4 particles. Preliminary ultrasonic treatment for 3 min increases the phase formation rate in the case of microwave heating and hardly affects the occurrence of the process upon conventional heating. It is revealed that the exposure of the initial mixture (preliminarily treated with ultrasound) to room temperature for 2 h or longer almost completely reduces the efficiency of the action of ultrasonic treatment on the phase formation process under hydrothermal conditions.
机译:研究了在水热条件下,温度为130°C的情况下CoFe2O4纳米晶体的形成。根据合成时间的不同,CoFe2O4颗粒的平均尺寸在6至11 nm之间变化。通过两种不同的方法加热水热介质,即微波(合成时间为1分钟至2小时)和常规方法(合成时间为30分钟至45小时)。结果表明,微波加热的使用大大促进了CoFe2O4颗粒的形成。在微波加热的情况下,预先进行3分钟的超声处理会增加相形成速率,并且在常规加热条件下几乎不会影响该过程的发生。结果表明,将初始混合物(预先用超声处理)暴露于室温2小时或更长时间几乎完全降低了超声处理在水热条件下对相形成过程的作用效率。

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