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A comprehensive review on ultrasonic spray pyrolysis technique: Mechanism, main parameters and applications in condensed matter

机译:超声波喷雾热解技术综述:冷凝物的机理,主要参数和应用

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摘要

Nanostructured materials have attracted much attention in recent decades. Nowadays, there are numerous nanomaterials with several applications. The ultrasonic spray pyrolysis method is a cost-effective and adaptable technique based on an aerosol process for synthesizing nanoparticles and depositing thin films. The technique is capable of synthesizing metal, oxide, and composite nanomaterials with precisely controllable morphologies and chemical compositions using metal salts in aqueous solvents. More importantly, it is popular, as evident from the growing number of studies being conducted on the technique. Here, we review studies conducted on basic principles and applications of the ultrasonic spray pyrolysis method and investigate effects due to its main parameters including the solution flow rate, the pyrolysis temperature, the distance between the nozzle and the substrate, the pyrolysis time, the carrier gas (oxygenitrogen) flow rate, and the precursor solution concentration on morphological properties of the prepared structures.
机译:近几十年来,纳米结构材料引起了很多关注。如今,有许多具有多种应用的纳米材料。超声波喷射热解方法是基于用于合成纳米颗粒和沉积薄膜的气溶胶方法的成本效益和适应性的技术。该技术能够在水性溶剂中使用精确可控的形态和化学组合物合成金属,氧化物和复合纳米材料。更重要的是,它很受欢迎,从而从越来越多的研究中进行了技术。在这里,我们审查了对超声波喷雾热解法的基本原理和应用进行的研究以及由于其主要参数,包括溶液流速,热解温,喷嘴和基板之间的距离,热解时间,载体的主要参数气体(氧气/氮气)流速,以及前体溶液浓度对制备的结构的形态学性质。

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