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Low-temperature CO oxidation over manganese, cobalt, and nickel doped CeO2 nanorods

机译:低温CO氧化在锰,钴和镍掺杂CEO2纳米棒

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摘要

Surface active sites such as oxygen vacancies, Ce3+ ions, and unsaturated coordinated sites on nano ceria (CeO2) are significant in catalytic oxidation reactions. The recent development in nanoengineered CeO2 made a pathway to extend its use in various catalytic applications. In this study, transition metals (Mn2+, Ni2+, and Co2+) doped CeO2 nanorods (NRs) were prepared by hydrothermal method and tested towards CO oxidation. Furthermore, the samples were characterized by various physicochemical techniques, namely, TEM and HR-TEM, SEM-EDX, XRD, ICP-OES, BET surface area, Raman spectroscopy, XPS, and H-2-TPR. The results demonstrated that the incorporation of dopants greatly enhances the surface defective sites (Ce3+ ions and a high degree of surface roughness) and redox properties of CeO2 NRs and thereby improved catalytic activity. Especially, the Co-CeO2 NR catalyst exhibited better CO conversion (T-50 similar to 145 degrees C) when compared to pure CeO2 NR (T-50 similar to 312 degrees C).
机译:在纳米二氧化铈(CeO2)上的氧空位,Ce3 +离子和不饱和协调位点等表面活性位点在催化氧化反应中显着。纳内工程首席执行官最近的开发使其在各种催化应用中扩展其使用。在该研究中,通过水热法制备过转化金属(Mn2 +,Ni2 +和CO2 +)掺杂CeO2纳米棒(NRS)并朝向共氧化。此外,样品的特征在于各种物理化学技术,即TEM和HR-TEM,SEM-EDX,XRD,ICP-OES,BET表面积,拉曼光谱,XPS和H-2-TPR。结果表明,掺杂剂的掺入大大增强了表面有缺陷的位点(Ce3 +离子和高度的表面粗糙度)和CeO2 NRS的氧化还原性能,从而改善了催化活性。特别是,与纯CeO 2 NR(类似于312℃的T-50)相比,CO-CEO2 NR催化剂表现出更好的CO转化(T-50类似于145℃)。

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  • 来源
    《RSC Advances》 |2016年第84期|共8页
  • 作者单位

    RMIT Univ Sch Appl Sci CAMIC GPO BOX 2476 Melbourne Vic 3001 Australia;

    CSIR Indian Inst Chem Technol Inorgan &

    Phys Chem Div Uppal Rd Hyderabad 500007 Andhra Pradesh India;

    RMIT Univ Sch Appl Sci CAMIC GPO BOX 2476 Melbourne Vic 3001 Australia;

    CSIR Indian Inst Chem Technol Inorgan &

    Phys Chem Div Uppal Rd Hyderabad 500007 Andhra Pradesh India;

    RMIT Univ Sch Appl Sci CAMIC GPO BOX 2476 Melbourne Vic 3001 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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