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Nanophase materials by hydrothermal, microwave-hydrothermal and microwave-solvothermal methods

机译:水热,微波-水热和微波-溶剂热法制备纳米相材料

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摘要

Hydrothermal, microwave-hydrothermal and microwave-solvothermal methods are truly low temperature methods for the prearation of nanophase materials of different sizes and shapes. These methods save energy and are environmentally benign, because the reactions take place in closed system conditions. The nanophase materials can be produced in either a batch or continuous process using the above methods. Oxide materials such as zirconia, titania and various spinel ferrites and metals such as Pt, Pd, Ag, Au, etc. of different sizes and shapes were crystallized in our laboratory using the hydrothermal, microwave-hydrothermal and microwave-solvothermal methods. The key novelty of our work is the use of microwave-assisted reactions to dramatically enhance the kinetics of crystallization by one to two orders of magnitude.
机译:水热,微波-水热和微波-溶剂热方法是用于制备不同尺寸和形状的纳米相材料的真正低温方法。这些方法节省了能源,并且对环境无害,因为这些反应是在封闭的系统条件下进行的。纳米相材料可以使用上述方法以间歇或连续方法生产。在我们的实验室中,使用水热法,微波水热法和微波溶剂热法对不同尺寸和形状的氧化物材料(例如氧化锆,二氧化钛和各种尖晶石铁氧体)和金属(例如Pt,Pd,Ag,Au等)进行了结晶。我们工作的关键新颖之处在于使用微波辅助反应可将结晶动力学显着提高一到两个数量级。

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