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Understanding the CO Oxidation on Pt Nanoparticles Supported on MOFs by Operando XPS

机译:了解Moverando XPS在MOFS上支持的PT纳米粒子的CO氧化

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摘要

Metal-organic frameworks (MOFs) are playing a key role in developing the next generation of heterogeneous catalysts. In this work, near ambient pressure X-ray photoelectron spectroscopy (NAP-XPS) is applied to study in operando the CO oxidation on Pt@MOFs (UiO-67) and Pt@ZrO2 catalysts, revealing the same Pt surface dynamics under the stoichiometric CO/O-2 ambient at 3 mbar. Upon the ignition at ca. 200 degrees C, the signature Pt binding energy (BE) shift towards the lower BE (from 71.8 to 71.2 eV) is observed for all catalysts, confirming metallic Pt nanoparticles (NPs) as the active phase. Additionally, the plug-flow light-off experiments show the superior activity of the Pt@MOFs catalyst in CO oxidation than the control Pt@ZrO2 catalyst with ca. 28% drop in the T-50% light-off temperature, as well as high stability, due to their sintering-resistance feature. These results provide evidence that the uniqueness of MOFs as the catalyst supports lies in the structural confinement effect.
机译:金属 - 有机框架(MOF)在开发下一代异质催化剂方面发挥着关键作用。在这项工作中,近在咫尺的环境压力X射线光电子能谱(NAP-XPS)用于在PT @ MOF(UIO-67)和PT ZrO2催化剂上的Co氧化中进行研究,在化学计量下揭示相同的Pt表面动力学CO / O-2环境3毫巴。在CA的点火。对于所有催化剂,观察到朝向下部的签名Pt结合能量(Be)朝向下部(从71.8至71.2eV),确认金属Pt纳米颗粒(NPS)作为活性相。另外,塞流偏离实验表明,PT @ MOFS催化剂在CO氧化中的优异活性比与CA对照PT ZrO2催化剂。由于其烧结抗性特征,T-50%光脱液温度下降28%,以及高稳定性。这些结果提供了证据表明,MOF的独特性作为催化剂支持的唯一性在于结构限制效果。

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