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Mechanochemical effects of ZnO powder in a wet super-fine grinding system as indicated by instrumental characterization

机译:ZnO粉末在湿法超细粉碎系统中的机械化学作用如仪器表征所示

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Mechanochemical effects of ZnO powders in a wet grinding system were characterized by the changes of ZnO particle micrograph, crystal structure, surface group, and water solubility during the grinding process. In addition, the Williamson Hall formula was used to show the trend of changes in ZnO crystal size and lattice deformation. The results suggested that in a wet grinding system, the primary function of mechanical power was to prompt formation of crystal defects on ZnO rather than reduction in crystal size of ZnO. The mechanical grinding activated ZnO particles, decreased the binding energy between Zn and O, improved the solubility of ZnO, and formed more associating hydroxyls. As the concentration of Zn2+ in solution increased to a certain level, recrystallization of ZnO might take place. Both crystal size and lattice deformation of ZnO showed fluctuation under the combined action of reaystallization and formation of crystal defects. (C) 2015 Elsevier B.V. All rights reserved.
机译:ZnO粉体在湿磨系统中的机械化学作用通过研磨过程中ZnO颗粒显微照片,晶体结构,表面基团和水溶性的变化来表征。此外,威廉姆斯霍尔公式用于显示ZnO晶体尺寸和晶格变形的变化趋势。结果表明,在湿磨系统中,机械动力的主要功能是促使ZnO上形成晶体缺陷,而不是减小ZnO的晶体尺寸。机械研磨活化的ZnO颗粒,降低Zn和O之间的结合能,提高ZnO的溶解度,并形成更多的缔合羟基。随着溶液中Zn2 +的浓度增加到一定水平,ZnO可能发生重结晶。 ZnO的晶体尺寸和晶格变形在重结晶和晶体缺陷形成的共同作用下均表现出波动。 (C)2015 Elsevier B.V.保留所有权利。

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