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首页> 外文期刊>Chemistry - A European Journal >On the Reactions of Methyl Radicals with TiO2 Nanoparticles and Granular Powders Immersed in Aqueous Solutions
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On the Reactions of Methyl Radicals with TiO2 Nanoparticles and Granular Powders Immersed in Aqueous Solutions

机译:甲基自由基与TiO 2 纳米颗粒与颗粒状粉体在水溶液中的反应

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摘要

Methyl radicals react with TiO2 nanoparticles (NPs) immersed in aqueous solutions to form transients in which the methyls are covalently bound to the particles. The rate constant for this reaction approaches the diffusion-controlled limit and increases somewhat with the number of methyls bound to the particle. The transients decompose to yield ethane. Thus, formally the particles “catalyse” the dimerization of the radicals, a reaction that is diffusion-controlled. Rutile powders behave similarly to the TiO2 NPs whereas the mechanism for the decomposition of the transients formed in the analogous reaction of the radicals with anatase powders differs. These results are of importance as alkyl radicals are formed near the surface of TiO2 in a variety of important photocatalytic processes. The results imply that the reactions of alkyl radicals with TiO2 have to be considered in these processes.
机译:甲基与浸泡在水溶液中的TiO 2 纳米粒子(NP)反应形成瞬态,其中甲基与粒子共价键合。该反应的速率常数接近扩散控制的极限,并随与颗粒结合的甲基数的增加而有所增加。瞬变分解产生乙烷。因此,粒子在形式上“催化”了自由基的二聚化,该反应是受扩散控制的。金红石粉的行为与TiO 2 NPs相似,而自由基与锐钛矿粉的类似反应中形成的瞬态分解的机理不同。这些结果非常重要,因为在各种重要的光催化过程中,在TiO 2 的表面附近都形成了烷基。结果表明,在这些过程中必须考虑烷基与TiO 2 的反应。

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