ZrO2)-based mat'/> Moment Dynamics of Zirconia Particle Formation for Optimizing Particle Size Distribution
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Moment Dynamics of Zirconia Particle Formation for Optimizing Particle Size Distribution

机译:用于优化粒度分布的氧化锆颗粒形成的矩动力学

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摘要

We study the particle formation process of Zirconia (ZrO2)-based material. With a model-based description of the particle formation process we aim for identifying the main growth mechanisms for different process parameters. After the introduction of a population balance based mathematical model, we derive the moment dynamics of the particle size distribution and compare the model to experimental data. From the fitted model we conclude that growth by molecular addition of Zr-tetramers or Zr-oligomers to growing particles as well as size-independent particle agglomeration takes place. For the purpose of depositing zirconia-based material (ZrbM) on a substrate, we determine the optimal process parameters such that the mineralization solution contains preferably a large number of nanoscaled particles leading to a fast and effective deposition on the substrate. Besides the deposition of homogeneous films, this also enables mineralization of nanostructured templates in a bioinspired mineralization process. The developed model is also transferable to other mineralization systems where particle growth occurs through addition of small molecular species or particle agglomeration. This offers the possibility for a fast determination of process parameters leading to an efficient film formation without carrying out extensive experimental investigations.
机译:我们研究了氧化锆的颗粒形成过程(<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm1”溢出=“ scroll”> <基于mi> ZrO 2 )的材料。通过对颗粒形成过程的基于模型的描述,我们旨在确定不同过程参数的主要生长机制。在引入基于种群平衡的数学模型之后,我们推导了粒度分布的矩动力学并将模型与实验数据进行了比较。根据拟合模型,我们得出结论:通过向生长的颗粒中添加Zr-四聚体或Zr-低聚物进行分子生长以及大小无关的颗粒附聚。为了在基底上沉积基于氧化锆的材料(ZrbM),我们确定最佳工艺参数,以使矿化溶液优选包含大量纳米级颗粒,从而导致在基底上快速有效地沉积。除了沉积均质膜之外,这还能够在生物启发的矿化过程中矿化纳米结构模板。所开发的模型还可以转移到其他矿化系统中,在该系统中,通过添加小分子物质或颗粒团聚可以实现颗粒生长。这提供了快速确定工艺参数的可能性,从而无需进行大量实验研究即可有效地形成膜。

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