AbstractSupported gold catalysts have attracted intensive interest due to their uniq'/> TiO <Subscript>2</Subscript>–Hydroxyapatite Composite as a New Support of Highly Active and Sintering-Resistant Gold Nanocatalysts for Catalytic Oxidation of CO and Photocatalytic Degradation of Methylene Blue
首页> 外文期刊>Catalysis Letters >TiO 2–Hydroxyapatite Composite as a New Support of Highly Active and Sintering-Resistant Gold Nanocatalysts for Catalytic Oxidation of CO and Photocatalytic Degradation of Methylene Blue
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TiO 2–Hydroxyapatite Composite as a New Support of Highly Active and Sintering-Resistant Gold Nanocatalysts for Catalytic Oxidation of CO and Photocatalytic Degradation of Methylene Blue

机译:TiO <下标> 2 -Hydroxyapatite复合作为高活性和烧结抗性金纳催化剂的新支持,用于催化氧化亚甲基蓝色的催化氧化和光催化降解

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摘要

AbstractSupported gold catalysts have attracted intensive interest due to their unique catalytic properties. The easy sintering of gold particles, however, is still the major obstacle to the practical application of gold catalysts. Herein, a highly active and sintering-resistant TiO2–hydroxyapatite (HAP, Ca10(PO4)6(OH)2) composite supported gold catalyst was prepared by a deposition–precipitation method. TEM results manifested TiO2–HAP had smaller gold nanoparticles than TiO2and HAP. Patterns of TG–DTG revealed that the presence of HAP inhibited the phase transformation from anatase to rutile. Based on UV–Vis and BET studies, HAP prevented the formation of large TiO2agglomerates, leading to higher dispersion of TiO2nanoparticles in TiO2–HAP composites. Au/TiO2–HAP had the higher activity and sintering-resistance compared with Au/TiO2and Au/HAP for CO oxidation. TiO2–HAP and Au/TiO2–HAP exhibited the best photocatalytic activity among supports and gold nanocatalysts, respectively. Gold nanoparticles could further improve the photocatalytic performance. It was likely that the synergistic interaction among gold nanoparticles, TiO2and HAP was responsible for the high activity and sintering-resistance of Au/TiO2–HAP.Graphical Abstract
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机译:<![CDATA [ <标题>抽象 支持的金催化剂已吸引密集的兴趣它们独特的催化性质。然而,易于烧结金颗粒仍然是金催化剂实际应用的主要障碍。在此,高活性和烧结抗性TiO <下标> 2 -Hydroxyapatite(HAP,CA <下标> 10 (PO <下标> 4 )<下标> 6 (OH)<下标> 2 )复合支撑的金催化剂通过沉积沉淀法制制备。 TEM结果表现为TIO <下标> 2 -HAP具有比TIO <下标> 2 和HAP的较小的金纳米颗粒。 TG-DTG的图案显示HAP的存在抑制了从锐钛酶到金红石的相变。基于UV-Vis和BET研究,HAP防止了大TiO <下标> 2 的凝聚,导致TiO <下标> 2 纳米粒子在TiO <下标> 2 -hap复合材料。 AU / TIO <下标> 2 -HAP与Au / TiO <下标> 2 和用于共同氧化的AU / HAP相比,具有更高的活动和烧结抵抗力。 TIO <下标> 2 -HAP和AU / TIO <下标> 2 -Hap分别在支持和金纳催化剂之间表现出最佳的光催化活动。金纳米颗粒可以进一步提高光催化性能。黄金纳米颗粒之间的协同相互作用可能是Au / TiO <下标> 2 -HAP的高活性和烧结抗性的负责。 <标题>图形抽象 ara> <图类别=“标准”float =“no”id =“fima”> ] ]

著录项

  • 来源
    《Catalysis Letters》 |2018年第1期|共15页
  • 作者单位

    Department of Chemistry Key Laboratory of Advanced Energy Material Chemistry (MOE) and TKL of Metal and Molecule Based Material Chemistry Nankai University;

    Department of Chemistry Key Laboratory of Advanced Energy Material Chemistry (MOE) and TKL of Metal and Molecule Based Material Chemistry Nankai University;

    Department of Chemistry Key Laboratory of Advanced Energy Material Chemistry (MOE) and TKL of Metal and Molecule Based Material Chemistry Nankai University;

    Department of Chemistry Key Laboratory of Advanced Energy Material Chemistry (MOE) and TKL of Metal and Molecule Based Material Chemistry Nankai University;

    Department of Chemistry Key Laboratory of Advanced Energy Material Chemistry (MOE) and TKL of Metal and Molecule Based Material Chemistry Nankai University;

    Department of Chemistry Key Laboratory of Advanced Energy Material Chemistry (MOE) and TKL of Metal and Molecule Based Material Chemistry Nankai University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 催化;
  • 关键词

    CO oxidation; Photocatalysis; Metal–support interaction; Gold; TiO2–HAP;

    机译:共同氧化;光催化;金属支持相互作用;金;TiO2-HAP;

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