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首页> 外文期刊>ChemCatChem >Confirming the Formation of Hydroxyl Radicals in the Catalytic Decomposition of H2O2 on Metal Oxides Using Coumarin as a Probe
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Confirming the Formation of Hydroxyl Radicals in the Catalytic Decomposition of H2O2 on Metal Oxides Using Coumarin as a Probe

机译:用香豆素作为探针,确认在金属氧化物上催化分解的羟基自由基形成

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摘要

Hydrogen peroxide can be catalytically decomposed to O-2 and H2O on metal oxide surfaces in contact with aqueous solutions containing H2O2. The initial step in this process has been proposed to be the formation of surface-bound hydroxyl radicals which has recently been verified using tris as a radical scavenger. Here, we make use of the unique fluorescent product 7-hydroxycoumarin formed in the reaction between hydroxyl radicals and coumarin to probe the formation of surface-bound hydroxyl radicals. The experiments clearly show that 7-hydroxycoumarin is formed upon catalytic decomposition of H2O2 in aqueous suspensions containing ZrO2-particles and coumarin, thereby confirming the formation of surface-bound hydroxyl radicals in this process. The results are quantitatively compared to results on the same system using tris as a probe for hydroxyl radicals. The effects of the two probes on the system under study are compared and it is concluded that coumarin has a significantly lower impact on the system.
机译:过氧化氢可以在与含有H 2 O 2的水溶液接触的金属氧化物表面上催化分解为O-2和H 2 O。已经提出了该方法的初始步骤是形成表面结合的羟基自由基,该羟基自由基最近通过TRIS作为自由基清除剂来验证。在此,我们利用在羟基自由基和香豆素之间的反应中形成的独特的荧光产物7-羟基苏格林,以探测形成表面结合的羟基自由基。该实验清楚地表明,在含有ZrO 2-颗粒和香豆素的水性悬浮液中的H 2 O 2的催化分解时形成7-羟基苏格林,从而确认在该过程中形成表面结合的羟基自由基。将结果与使用TRIS作为羟基自由基的探针产生相同的系统相比。比较了两种探针对正在研究的系统的影响,并得出结论,香豆素对系统的影响显着降低。

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