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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Design of a thermally resistant core@shell/halloysite catalyst with optimized structure and surface properties for a Pd-only three-way catalyst
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Design of a thermally resistant core@shell/halloysite catalyst with optimized structure and surface properties for a Pd-only three-way catalyst

机译:用PD-TWAIT三元催化剂的优化结构和表面性能设计热耐核心@壳/霍羊矿催化剂

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摘要

In this study, two types of core@shell nanoparticles, CeO2@Pd and inverse Pd@CeO2 nanoparticles, were synthesized by sequential deposition and electrostatic attraction-induced deposition method, respectively. Then, the core@shell nanoparticles supported on halloysite were thermally treated at different temperatures, and the nascent core@shell/H-x catalysts were characterized and evaluated for their three-way catalytic performance. During the thermal treatment (650 degrees C, 800 degrees C, and 1100 degrees C), the CeO2@Pd/H-x catalysts showed strong temperature sensitivity, resulting in aggregation of the active metal particles, degradation of the textural properties, and weak interactions between the active sites and support, accompanied by the deactivation of the three-way reaction. Remarkably, Pd@CeO2/H-800 exhibits excellent catalytic performance because it has an appropriate Pd-CeO2 interaction and high thermal stability, which effectively suppresses the encapsulation and aggregation of Pd@CeO2 nanoparticles and imparts a high content of Ce3+ species and oxygen vacancies and equivalent of Pd2+/Pd degrees ratio.
机译:在该研究中,通过顺序沉积和静电吸引诱导的沉积方法合成了两种类型的核心@ Shell纳米粒子,CeO2 @ Pd和逆Pd @ CeO2纳米颗粒。然后,在不同的温度下热处理霍氏铁矿核心的核心α纳米颗粒,并在三元催化性能下进行热处理并评估新生的核心/ H-X催化剂。在热处理期间(650℃,800℃和1100℃),CEO2 @ Pd / HX催化剂显示出强烈的温度敏感性,导致活性金属颗粒的聚集,纹理性质的降解,并且之间的弱相互作用活跃的部位和支持,伴随着三元反应的失活。值得注意的是,Pd @ CeO2 / H-800表现出优异的催化性能,因为它具有适当的PD-CeO2相互作用和高热稳定性,有效地抑制了Pd @ CeO2纳米颗粒的包封和聚集,并赋予高含量的CE3 +物种和氧空位。并相当于PD2 + / PD度比。

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