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Enhancement of the Catalytic Activity of Supported Gold Nanoparticles for the Fenton Reaction by Light

机译:光增强了负载型金纳米粒子对Fenton反应的催化活性

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摘要

Laser flash photolysis of supported gold nanopartides exciting at the surface plasmon band (532 nm) has allowed in the case of Au/CeO_2 and Au/OH-npD (OH-npD: Fentontreated diamond nanoparticles) detection of transients decaying in the microsecond time scale that have been attributed as indicating photoinduced electron ejection from gold based on N_2O quenching and the observation of the generation of methyl viologen radical cations. This photochemical behavior has led us to hypothesize that there could be assistance to the catalytic activity or these materials by irradiation in those cases wherein the mechanism involves electron transfer to or from a substrate to the gold. This hypothesis has been confirmed by observing that the catalytic activity of Au/OH-npD for the Fenton degradation of phenol with hydrogen peroxide can be increased over 1 order of magnitude by irradiation at 532 nm. Moreover, there is a linear relationship between the initial reaction rate and the incident photon flux. This photoenhancement allows promoting Fenton activity at pH 8 in which the catalytic activity of Au/OH-npD is negligible. The same photo enhancement activity for the Fenton degradation of phenol was observed for other supported gold catalysts including those that do not exhibit microsecond transients in the nanosecond laser flash photolysis (Au/TiO_2 and Au/SiO_2) due to their lifetime shorter than microseconds. It is proposed that the photo enhancement should be a general phenomenon in gold catalysis for those reaction mechanisms involving positive and/or negative gold species.
机译:在Au / CeO_2和Au / OH-npD(OH-npD:Fenton处理的金刚石纳米粒子)的情况下,可以在表面等离激元带(532 nm)处激发的负载金纳米粒子进行激光快速光解,从而检测在微秒级衰减的瞬变它们被归因于指示基于N_2O淬灭的光诱导电子从金中弹射出来,并观察到了甲基紫精自由基阳离子的生成。这种光化学行为使我们假设,在某些机理涉及电子与金之间或与金之间的电子转移的情况下,可以通过辐射辅助催化活性或这些材料。通过观察到Au / OH-npD对过氧化氢苯酚的Fenton降解的催化活性可以通过在532 nm的照射增加1个数量级而得到证实。此外,初始反应速率与入射光子通量之间存在线性关系。这种光增强使得在pH 8时Fenton活性得以提高,而Au / OH-npD的催化活性可忽略不计。对于其他负载的金催化剂,包括由于纳秒寿命短于微秒而在纳秒激光闪光光解中不表现出微秒瞬变的那些催化剂(Au / TiO_2和Au / SiO_2),观察到了相同的苯酚的Fenton降解光增强活性。对于涉及正和/或负金物质的那些反应机理,提出光增强应该是金催化中的普遍现象。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第7期|p.2218-2226|共9页
  • 作者单位

    Departamento de Quimica, Universidad Politecnica de Valencia, Camino de Vera s, 46022 Valencia, Spain;

    Departamento de Quimica, Universidad Politecnica de Valencia, Camino de Vera s, 46022 Valencia, Spain;

    Departamento de Quimica, Universidad Politecnica de Valencia, Camino de Vera s, 46022 Valencia, Spain;

    Departamento de Quimica, Universidad Politecnica de Valencia, Camino de Vera s, 46022 Valencia, Spain;

    Instituto de Tecnologia Quimica CSIC-UPV, Universidad Politecnica de Valencia, Av. De Ios Naranjos s, 46022 Valencia, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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