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Decoration of Pt on Cu/Co double-doped CeO2 nanospheres and their greatly enhanced catalytic activity

机译:Cu / Co双掺杂CeO2纳米球上Pt的修饰及其催化活性的大大提高

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摘要

In this paper, we report an efficient strategy for the synthesis of Cu/Co double-doped CeO2 nanospheres (CuxCo1–x–CeO2–Pt, 0 ≤ x ≤ 1), which were fabricated via a simple water–glycol system. The following in situ surface decoration of Pt nanoparticles make these nanospheres highly active for the catalytic reduction of nitrophenol and CO oxidation. Detailed tests show that their catalytic performance strongly depends on the doping components and ion concentration of Cu and Co ions. The best samples of Cu0.50Co0.50–CeO2–Pt and Cu0.34Co0.66–CeO2–Pt demonstrate an excellent turnover frequency (TOF) of more than 450 h–1 after five cycles and retains about 99% conversion by using NH3BH3 as a reductant to reduce nitrophenol. Moreover, Cu0.50Co0.50–CeO2–Pt possesses a much lower light-off and T100 (the temperature for 100% CO oxidation) temperature compared with the other catalysts.
机译:在本文中,我们报告了一种通过简单的水-乙二醇体系合成的Cu / Co双掺杂CeO2纳米球(CuxCo1-x-CeO2-Pt,0≤x≤1)的有效策略。 Pt纳米粒子的以下原位表面修饰使这些纳米球具有很高的活性,可催化还原硝基苯酚和CO氧化。详细的测试表明,它们的催化性能在很大程度上取决于掺杂成分以及Cu和Co离子的离子浓度。 Cu0.50Co0.50–CeO2–Pt和Cu0.34Co0.66–CeO2–Pt的最佳样品在五个循环后表现出超过450 h –1 的极佳周转率(TOF),并且保留通过使用NH3BH3作为还原剂还原硝基苯酚,可实现约99%的转化率。而且,与其他催化剂相比,Cu0.50Co0.50–CeO2-Pt的起燃温度和T100(100%CO氧化的温度)温度要低得多。

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