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Ultrathin ZnTi-LDH nanosheets for photocatalytic aerobic oxidation of aniline based on coordination activation

机译:超薄ZnTi-LDH nanosheets光催化有氧氧化的苯胺协调激活

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In this work, ZnTi-LDH nanosheets with several monolayer thickness were prepared as photocatalysts for the aerobic oxidation of aniline to yield nitrosobenzene under visible light irradiation. UV-vis DRS, in situ FTIR and XPS results jointly revealed that aniline molecules were efficiently chemisorbed and activated on ZnTi-LDH to form surface coordination active species, improving visible light absorption and inducing the photocatalytic reaction. The surface OH groups on ZnTi-LDH as the Bronsted base sites facilitated the reductive deprotonation of aniline to form the anilino anion, which was a key step in promoting aniline oxidation. ESR and XPS data suggested that oxygen vacancies (OVs) were formed due to the interaction between exposed OH groups and aniline molecules. The OVs, as the centers to capture photoelectrons, achieve the reduction of oxygen molecules to O-2(-) radicals, which further oxidize anilino species to produce nitrosobenzene. Finally, a possible mechanism was proposed to reveal the photocatalytic process based on the surface coordination activation theory.
机译:在这个工作中,ZnTi-LDH nanosheets几个单层厚度被准备有氧氧化的催化剂苯胺产生亚硝基苯在可见的光照射。XPS结果共同表明,苯胺有效地吸附和分子激活ZnTi-LDH形成表面上协调活跃的物种,改善明显光吸收和诱导光催化的反应。布仑斯惕基地网站促进了还原去质子化形成苯胺基苯胺负离子,促进苯胺的一个关键步骤氧化。空缺(ov)是由于形成的互动暴露哦组和苯胺分子。光电子,达到减少氧气分子0 2(-)自由基,进一步生产氧化苯胺基物种亚硝基苯。提出了揭示了光催化过程基于表面协调激活理论。

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