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Effect of coadsorbed water on the photodecomposition of acetone on TiO2(110)

机译:共吸附水对丙酮在TiO2(110)上光解的影响

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The influence of coadsorbed water on the photodecomposition of acetone on TiO2 was evaluated using temperature-programmed desorption (TPD) and the rutile TiO2(110) surface as a model photocatalyst.Of the two major influences ascribed to water in the heterogeneous photocatalysis literature (promotion through OH radical supply and inhibition due to site blocking),only the negative influence of water was observed.As long as the total water + acetone coverage was maintained well below the first-layer saturation coverage (1 ML),little inhibition of acetone photodecomposition was observed.However,as the total water + acetone coverage exceeded 1 ML,acetone was preferentially displaced from the first layer to physisorbed states by water,and the extent of acetone photodecomposition was attenuated.The immediate product of acetone photodecomposition was adsorbed acetate,which occupies twice as many surface sites per molecule as acetone.Because the acetate intermediate was more stable on the TiO2(110) surface than either water or acetone (as gauged by TPD),and because it had a lower photodecomposition rate than acetone,additional surface sites were not opened up during acetone photodecomposition to allow previously displaced acetone molecules to reenter the first layer.
机译:以程序升温脱附(TPD)和金红石型TiO2(110)表面为模型光催化剂,评价了共吸附水对丙酮在TiO2上光分解的影响。通过OH自由基的供应和由于位阻而产生的抑制作用),仅观察到水的负面影响。只要水和丙酮的总覆盖率保持在远低于第一层饱和覆盖率(1 ML)的水平,对丙酮光分解的抑制作用就很小但是,当水和丙酮的总覆盖量超过1 ML时,丙酮优先被水从第一层转移到物理吸附状态,并且丙酮的光分解程度减弱了。丙酮光分解的直接产物是吸附的乙酸盐,这每个分子的表面位点是丙酮的两倍。因为乙酸盐中间体在TiO2上更稳定( 110)的表面比水或丙酮(通过TPD测得)要高,并且由于它的光分解速率比丙酮低,因此在丙酮光分解过程中不会打开其他表面位置,以使先前置换的丙酮分子重新进入第一层。

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