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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >The critical role of furfural alcohol in photocatalytic H2O2 production on TiO2
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The critical role of furfural alcohol in photocatalytic H2O2 production on TiO2

机译:糠醇在TiO2上光催化H2O2生产中糠醛醇的关键作用

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摘要

Isopropanol is frequently employed as the electron donor to facilitate hole transfer and promote photocatalytic H2O2 production. However, the role of alcohols can be more complicated due to the interaction with TiO2. According to a comparison of aliphatic, aromatic and aromatic heterocyclic alcohols on photocatalytic H2O2 production on TiO2, furfural alcohol (FFA) displays superior capability to others. The presence of alcohols with aromatic structures can significantly accelerate formation and suppress decomposition of H2O2. Moreover, furfural alcohol tends to form more stable complexes on TiO2 surface, which can negatively shift the flat band position, induce visible light activity, and boost two-electron reduction of oxygen. The altered electron transfer pathway for H2O2 production was indicated by the Koutecky-Levich plots, the less pH dependence, and the signals of peroxide species in Raman spectra. This study brings insights for modulating the interfacial oxygen reduction and designing highly efficient and selective H2O2 production photocatalytic systems.
机译:异丙醇经常用作电子供体,以促进空穴转移并促进光催化H2O2的生产。然而,由于与TiO2的相互作用,醇的作用可以更加复杂。根据TiO 2上的光催化H2O2生产上的脂族,芳族和芳族杂环醇的比较,糠醛醇(FFA)对其他人呈现出优异的能力。具有芳族结构的醇的存在可以显着加速形成和抑制H2O2的分解。此外,糠醛醇倾向于在TiO 2表面上形成更稳定的络合物,这可以呈现平坦带位置,诱导可见光活性,并提高氧气的两电子减少。通过Koutecky-Levich图,pH依赖性较少的pH依赖性和过氧化物物种的信号的改变的电子转移途径。本研究提出了调节界面氧还原和设计高效和选择性H2O2生产光催化系统的见解。

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