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Controlled Preparation and Mechanism Study of Zirconia-Coated Hematite Particles by Hydrolysis of Zirconium Sulfates

机译:硫酸锆水解制备氧化锆包覆赤铁矿颗粒的控制制备及机理研究

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摘要

Zirconia-precursor-coated hematite particles were prepared by hydrolysis of zirconium sulfate in aqueous solution. The as-prepared zirconia-precursor shell was amorphous with a thickness of about several similar to 30 nm that can be controllably achieved by varying the processing parameters and had a composition of Zr-2(OH)(6)SO4, which crystallized to tetragonal ZrO2 after annealing at 700 degrees C. The focus of this work is to investigate in detail the process and to understand the key issues for surface coating in solution. The thermodynamic analysis on hydrolysis of zirconium sulfate was conducted, and a "surface-deposition region" for zirconia coating was suggested in this work. Furthermore, the kinetic study of the process was also described. The hydrolysis could be considered as a pseudo-second-order reaction at 50 degrees C, and the rate constant was calculated to be 0.61 L mol(-1) s(-1). The hydrolysis mechanism of zirconium salt was also interpreted from the viewpoint of structural chemistry. The influence of the surfactants on the coating process was also discussed.
机译:通过在水溶液中水解锆来制备氧化锆前体包覆的赤铁矿颗粒。所制备的氧化锆前体壳为非晶态,厚度约为30 nm,可以通过改变加工参数来控制,其组成为Zr-2(OH)(6)SO4,结晶为四方晶。在700摄氏度下退火后的ZrO2。这项工作的重点是详细研究该过程并了解溶液中表面涂层的关键问题。进行了硫酸锆水解的热力学分析,并提出了用于氧化锆涂层的“表面沉积区”。此外,还描述了该过程的动力学研究。水解可被认为是在50摄氏度下的拟二级反应,其速率常数经计算为0.61 L mol(-1)s(-1)。还从结构化学的角度解释了锆盐的水解机理。还讨论了表面活性剂对涂覆过程的影响。

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