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Thermal Stability Study of Ce_(0.75)-Zr_(0.25)O Nanostructures Synthesized via Water-in-Oil Microemulsion Metho

机译:通过水式微乳液甲基Ce_(0.75)-ZR_(0.25)α纳米结构的热稳定性研究

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Fundamentally, ceria particle had ability to store, transport and release oxygen, which was identified as oxygen storage capacity (OSC). Due to this OSC ability, ceria became the most important component in the three-way catalyst. With the addition of zirconia into the ceria resulting in better performance in three-way catalyst as it increased or improved thermal stability and also promotes the redox properties. This study was conducted to investigate the effects of heat treatment on the structure and physical property of nanocrystalline Ce-Zr-O solid solution. Microemulsion method was used for preparation of Ce-Zr-O solid solution, and heat treatment investigation was applied towards the synthesized nanocrystalline Ce-Zr-O solid solution. The phase and crystal structure of Ce-Zr-O solid solution were determined using XRD analysis. While, the modification of surface area and porosity size over the wide range of calcination temperatures range from 300°C to 700°C was investigated using BET Analyzer. XRD analysis confirmed the Ce_(0.75)Zr_(0.25)O_2 solid solution was successfully synthesized in the research. The results exhibited the effect of heat treatment on the decreasing of surface areas and porosity profiles of the Ce_(0.75)Zr_(0.25)O_2. Despite of the reduction of surface areas at elevated temperatures, the study found the promising results that the enhancement of thermal stability of ceria by addition of zirconia.
机译:从根本上,Ceria颗粒具有存储,运输和释放氧的能力,该氧被鉴定为氧气储存能力(OSC)。由于这种OSC能力,Ceria成为三元催化剂中最重要的组成部分。随着氧化锆加入二氧化铈,导致三元催化剂的性能更好,因为它增加或改善了热稳定性并且还促进了氧化还原性能。进行该研究以研究热处理对纳米晶Ce-Zr-O固溶体结构和物理性质的影响。微乳液法用于制备Ce-ZR-O固溶体,并朝向合成的纳米晶Ce-Zr-O固溶体施加热处理研究。使用XRD分析测定Ce-Zr-O固溶体的相和晶体结构。虽然,使用BET分析仪研究了表面积和孔隙率在宽范围的煅烧温度范围内的孔隙率大小的修改。 XRD分析证实了CE_(0.75)ZR_(0.25)O_2固体溶液在研究中成功地合成。结果表现出热处理对CE_(0.75)Zr_(0.25)O_2的表面积和孔隙率分布的效果。尽管在高温下降低了表面积,但研究发现了通过加入氧化锆来增强二氧化铈的热稳定性的有希望的结果。

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