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O2-probe EPR as a method for characterization of surface oxygen vacancies in ceria-based catalysts

机译:O2 -探针EPR作为表征二氧化铈基催化剂中表面氧空位的方法

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摘要

Catalytic activity of ceria-based systems is essentially related to the oxygen storage/release characteristics of the surface and, therefore, to the properties of the oxygen vacancies generated upon reduction of CeO2. EPR analysis of the superoxide species formed upon low temperature oxygen chemisorption on this type of systems is shown to be a very powerful method to characterize such defects. The present work revises results mainly obtained in the authors’ laboratory on this topic and shows the main physicochemical properties of such superoxide species. Situations of practical interest in the field of heterogeneous catalysis are analysed. These include the analysis of defects formed on pure CeO2, as well as their chemical modification by NO chemisorption or in the presence of chlorine impurities, typically present in supported metal catalysts. Additionally, the characterization of two-dimensional ceria structures in alumina-supported ceria systems with high practical interest is shown to be uniquely provided by this EPR-based method.
机译:基于二氧化铈的体系的催化活性与表面的氧气存储/释放特性有关,因此与由CeO2还原产生的氧空位的性质有关。在这种类型的系统上,低温氧化学吸附后形成的超氧化物类的EPR分析显示出是表征此类缺陷的非常有效的方法。本工作修改了主要在作者实验室中就此主题获得的结果,并显示了此类超氧化物的主要理化性质。分析了多相催化领域的实际应用情况。其中包括分析纯CeO2上形成的缺陷,以及通过NO化学吸附或在通常存在于负载型金属催化剂中的氯杂质存在下对它们的化学修饰。此外,通过这种基于EPR的方法,独特地提供了在氧化铝负载的二氧化铈系统中具有很高实用价值的二维二氧化铈结构的表征。

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