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Crystallization and Grain Growth Kinetics for Precipitation-Based Ceramics: A Case Study on Amorphous Ceria Thin Films from Spray Pyrolysis

机译:沉淀基陶瓷的结晶和晶粒生长动力学:以喷雾热解法制备的非晶态二氧化铈薄膜为例

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摘要

The introductory part reviews the impact of thin film fabrication, precipitation versus vacuum-based methods, on the initial defect state of the material and microstructure evolution to amorphous, biphasic amorphous-nanocrystalline, and fully nanocrystalline metal oxides. In this study, general rules for the kinetics of nucleation, crystallization, and grain growth of a pure single-phase metal oxide thin film made by a precipitation-based technique from a precursor with one single organic solvent are discussed. For this a complete case study on the isothermal and non-isothermal microstructure evolution of dense amorphous ceria thin films fabricated by spray pyrolysis is conducted. A general model is established and comparison of these thin film microstructure evolution to kinetics of classical glass-ceramics or metallic glasses is presented. Knowledge on thermal microstructure evolution of originally amorphous precipitation-based metal oxide thin films allows for their introduction and distinctive microstructure engineering in devices-based on microelectromechanical (MEMS) technology such as solar cells, capacitors, sensors, micro-solid oxide fuel cells, or oxygen separation membranes on Si-chips.
机译:引言部分回顾了薄膜制造,沉淀法与基于真空的方法对材料的初始缺陷状态以及微观结构向无定形,双相无定形纳米晶和完全纳米晶金属氧化物的影响。在这项研究中,讨论了由基于沉淀的技术由前体与一种单一有机溶剂制成的纯单相金属氧化物薄膜的成核,结晶和晶粒生长动力学的一般规则。为此,对通过喷雾热解制备的致密非晶态二氧化铈薄膜的等温和非等温微观结构演变进行了完整的案例研究。建立了一个通用模型,并比较了这些薄膜的微观结构演变与经典玻璃陶瓷或金属玻璃的动力学。对最初基于无定形沉淀物的金属氧化物薄膜的热微结构演变的了解有助于将其引入和基于微机电(MEMS)技术的设备中独特的微结构工程,例如太阳能电池,电容器,传感器,微固体氧化物燃料电池或硅芯片上的氧气分离膜。

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  • 来源
    《Advanced Functional Materials》 |2009年第17期|2790-2799|共10页
  • 作者单位

    Department of Materials, ETH Zurich ETH Zurich Wolfgang-Pauli-Str.10, Zurich CH-8093 (Switzerland);

    Department of Materials, ETH Zurich ETH Zurich Wolfgang-Pauli-Str.10, Zurich CH-8093 (Switzerland);

    Department of Materials, ETH Zurich ETH Zurich Wolfgang-Pauli-Str.10, Zurich CH-8093 (Switzerland);

    Department of Materials, ETH Zurich ETH Zurich Wolfgang-Pauli-Str.10, Zurich CH-8093 (Switzerland);

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