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Large Scale Synthesis of ZnO Nanostructures of Different Morphologies through Solvent-free Mechanochemical Synthesis and their Application in Photocatalytic Dye Degradation

DOI:10.3844/ajeassp.2016.41.52 期刊:American Journal of Engineering and Applied Sciences 出版年份:2016 更新时间:2025-09-04 15:30:14
摘要: Well crystalline, near-stoichiometric zinc oxide nanostructures of different morphologies are fabricated in large scale, utilizing a simple, cost effective mechanochemical synthesis in absence of solvent. Effects of ionic and nonionic surfactants along with the concentration of hydrolyzing agent on the evolution of nanostructure morphology have been studied. It has been observed that while a cationic surfactant such as Cetyltrimethylammonium Bromide (CTAB) favors the nanostructures to growth along their polar c-axis, a nonionic surfactant such as Polyvinylpyrrolidone (PVP) reduces their preferred c-axis growth. Increase of hydrolyzing agent in the reaction mixture enhances the growth rate of the nanostructures. The nanostructures have been tested for photodegradation of anionic dye molecules such as Methylene Blue (MB). All the nanostructures manifest high photocatalytic performance. Apart from morphology, the specific surface area, crystal plane orientation and the concentration of basic sites at surface are seen to contribute significantly to the photocatalytic performance of the zinc oxide nanostructures.
作者: Raúl Sánchez Zeferino,Jesús Alberto Ramos Ramón,Ma. Eunice de Anda Reyes,Rutilo Silva González,Umapada Pal
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To fabricate ZnO nanostructures of different morphologies in large scale through a solvent-free soft mechanochemical process and study their photocatalytic dye degradation performance.

ZnO nanostructures of different morphologies were successfully fabricated in large scale through a solvent-free soft mechanochemical process. The nanostructures showed high photocatalytic performance for cationic dye degradation under UV illumination, with the high concentration of basic sites at the surface being the principal responsible for their high photocatalytic activity. The process is extremely attractive for fabricating ZnO nanostructures for dye removal from industrial effluents due to its large scale production ability, low cost processing, and high dye degradation ability.

The study focuses on the photocatalytic degradation of anionic dye molecules such as Methylene Blue (MB) under UV illumination. The effects of other types of dyes or under different light conditions were not explored.

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