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首页> 外文期刊>ACS catalysis >Selective Hydrogen Peroxide Formation by Titanium Dioxide Photocatalysis with Benzylic Alcohols and Molecular Oxygen in Water
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Selective Hydrogen Peroxide Formation by Titanium Dioxide Photocatalysis with Benzylic Alcohols and Molecular Oxygen in Water

机译:水中苯甲酸和分子氧的TiO2光催化选择性生成过氧化氢。

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Photocatalytic production of hydrogen peroxide (H2O2) on semiconductor catalysts with alcohol as a hydrogen source and molecular oxygen (O2) as an oxygen source has attracted much attention as a potential method for safe H2O2 synthesis, because the reaction can be carried out without the use of explosive H2/O2 mixed gases. Early reported photocatalytic systems with aliphatic alcohol as a hydrogen source, however, produce only a few millimolar levels of H2O2. We found that benzylic alcohols, when used as a hydrogen source for photoreaction in water with titanium dioxide (TiO2) photocatalyst, produce a very high concentration of H2O2 (ca. 40 mM). Raman spectroscopy and electron spin resonance analysis revealed that the enhanced H2O2 formation is due to the efficient formation of side-on coordinated peroxo species on the photoactivated TiO2 surface, via the reaction of benzylic alcohol and O2. The peroxo species is readily transformed to H2O2, thus facilitating highly efficient H2O2 production.
机译:作为可以安全地合成H2O2的潜在方法,以醇为氢源和分子氧(O2)为氧源的半导体催化剂上的光催化生产过氧化氢(H2O2)已引起了广泛的关注。爆炸性的H2 / O2混合气体。然而,早期报道的以脂肪醇为氢源的光催化系统仅产生几个毫摩尔水平的H2O2。我们发现,苯甲醇用作氢与二氧化钛(TiO2)光催化剂在水中进行光反应的氢源时,会产生非常高的H2O2浓度(约40 mM)。拉曼光谱和电子自旋共振分析表明,H2O2形成的增强是由于通过苄醇与O2的反应在光活化的TiO2表面上有效形成了侧向配位过氧化物。过氧物质很容易转化为H2O2,从而促进了H2O2的高效生产。

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