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首页> 外文期刊>Ultrasonics sonochemistry >Superiority of sonochemical processing method for the synthesis of barium titanate nanocrystals in contrast to the mechanochemical approach
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Superiority of sonochemical processing method for the synthesis of barium titanate nanocrystals in contrast to the mechanochemical approach

机译:与机械化学方法相比,合成钛酸钡纳米晶体合成的儿童化学加工方法的优势

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摘要

The results indicated that the ultrasonic sonochemistry which brings into play the acoustic cavitation phenomenon is more powerful and feasible in synthesizing the mixed oxides in contrast to the conventional solid-state approaches. The obtained results demonstrated that the sonochemical approach is able to obtain highly pure powder product at a much lower processing temperature of about 323 K (50 degrees C) in contrast to 1173 K (900 degrees C) which is essential for the synthesis by the mechanochemical approach. Sonochemical synthesis benefits from homogenous ordering the reactant ions (which have been dissolved in the solution mixture) into perovskite structure using ultrasonication. This indicates that the acoustic cavitation phenomenon is much more powerful and cost-effective than high energy ball milling in synthesizing nanopowders of the mixed oxide materials. Moreover, the sonochemical processing method is able to prepare the final powder products in a much shorter time by a one-step synthesis approach without the need for the successive calcination in contrast to the solid-state approach.
机译:结果表明,与传统的固态方法相比,在合成混合氧化物的情况下,使发挥声学空化现象的超声波多次化学技术更加强大,可行。所得的结果表明,同步化学方法能够以大约323k(50℃)的低于1173k(900℃)的加工温度在大约323k(50℃)的高度纯粉末产品中获得高纯的粉末产品,这对于通过机械化学的合成至关重要方法。有多种化学的合成利用均匀的排序使反应物离子(已经溶解在溶液混合物中)中的钙钛矿结构使用超声波结构。这表明声学空化现象在合成混合氧化物材料的纳米摩擦方中比高能量球铣削更强大且经济高效。此外,通过一步的合成方法可以在不需要连续煅烧与固态方法对比的情况下在更短的时间内制备最终粉末产物的最终粉末产物。

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