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A novel approach to prepare Bi2Fe4O9 flower-like spheres with enhanced photocatalytic performance

机译:一种制备具有增强光催化性能的Bi2Fe4O9花状球的新方法

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摘要

A novel two-step approach consisting of hydrothermal process and subsequently selective etching has been developed to prepare flower-like three-dimensional porous Bi2Fe4O9 spheres with good uniformity and highly photocatalytic performance. XRD patterns and SEM images reveal that the Bi2Fe4O9 phase does not exhibit any changes after the etching process, and the crystal morphology evolves from micro-platelets to flower-like three-dimensional porous Bi2Fe4O9 spheres by controlling the experiment parameters. The change of morphology will lead to the significant increase of specific surface area, which would be beneficial to the enhancement of photocatalytic performance owing to prominent absorption in the ultraviolet and visible light region. As compared to Bi2Fe4O9 microplatelets, flower-like three-dimensional porous Bi2Fe4O9 spheres exhibit excellent photocatalytic degration rate of methyl orange (MO).
机译:已经开发了由水热过程和随后的选择性蚀刻组成的新颖的两步法,以制备具有良好均匀性和高度光催化性能的花状三维多孔Bi2Fe4O9球。 XRD图谱和SEM图像表明,Bi2Fe4O9相在刻蚀后没有任何变化,通过控制实验参数,其晶体形态从微片状演化为花状三维Bi2Fe4O9球形。形态的变化将导致比表面积的显着增加,由于在紫外和可见光区域的显着吸收,这将有利于增强光催化性能。与Bi2Fe4O9微片相比,花状三维Bi2Fe4O9多孔球表现出优异的甲基橙(MO)光催化降解率。

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