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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Amorphous Co3O4 modified CdS nanorods with enhanced visible-light photocatalytic H-2-production activity
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Amorphous Co3O4 modified CdS nanorods with enhanced visible-light photocatalytic H-2-production activity

机译:具有增强的可见光光催化H-2-生成活性的无定形Co3O4修饰的CdS纳米棒

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In this work, amorphous Co3O4 modified CdS nanorods were synthesized by a two-step solvothermal/hydrothermal method, and characterized by transmission electron microscopy (TEM), X-ray diffraction (XRD), high-resolution transmission electron microscopy, UV-visible spectroscopy, nitrogen absorption and X-ray photoelectron spectroscopy. The photocatalytic performance of the as-synthesized Co3O4-CdS nanorods was evaluated through H-2 generation from an aqueous solution containing sulfide and sulfite under visible light (lambda >= 420 nm). The results showed that the photocatalytic activity of CdS nanorods for H-2 evolution could be significantly enhanced by loading the amorphous Co3O4. The optimal Co3O4 loading was found to be approximately 3.0 mol%. The as-prepared CdS nanorods with 3 mol% Co3O4 exhibited the highest photocatalytic activity for H-2 evolution under visible light irradiation, 236 mu mol g(-1) h(-1), which is 33-fold higher than that of the pristine CdS nanorods. Furthermore, the co-loading of 1 wt% Pt can lead to another three times enhancement in the photocatalytic H-2-production activity. The mechanism for the enhanced H-2-production performance of Co3O4-CdS nanorods was discussed. The excellent performance of Co3O4-CdS nanorods is mainly ascribed to the loading of amorphous Co3O4 onto the surface of CdS nanorods, which could promote the separation of electron-hole pairs and enhance the stability of CdS nanorods due to the formation of p-n heterojunctions between the Co3O4 and CdS nanorods, thus leading to an enhanced activity for H-2 generation. This work demonstrated that the loading of amorphous Co3O4 is a facile strategy to enhance the photocatalytic activity of CdS nanorods, which may provide some potential opportunities for designing other composite photocatalysts for water splitting.
机译:本研究采用两步溶剂热/水热法合成了无定形Co3O4修饰的CdS纳米棒,并通过透射电子显微镜(TEM),X射线衍射(XRD),高分辨率透射电子显微镜,紫外可见光谱进行了表征。 ,氮吸收和X射线光电子能谱。通过在可见光(λ> = 420 nm)下从含硫化物和亚硫酸盐的水溶液中H-2生成,评估了合成的Co3O4-CdS纳米棒的光催化性能。结果表明,通过负载无定形的Co3O4可以显着增强CdS纳米棒对H-2的光催化活性。发现最佳的Co 3 O 4装载量为约3.0mol%。制备的具有3 mol%Co3O4的CdS纳米棒在可见光照射下对H-2的分解表现出最高的光催化活性,为236μmol g(-1)h(-1),比其高33倍。原始的CdS纳米棒。此外,1 wt%Pt的共同负载可导致光催化H-2-生产活性再提高三倍。讨论了提高Co3O4-CdS纳米棒H-2-生产性能的机理。 Co3O4-CdS纳米棒的出色性能主要归因于将无定形Co3O4负载到CdS纳米棒的表面,这可以促进电子-空穴对的分离并由于CdS纳米棒之间形成pn异质结而增强CdS纳米棒的稳定性。 Co3O4和CdS纳米棒,从而提高了H-2生成的活性。这项工作表明,无定形Co3O4的装载是一种增强CdS纳米棒光催化活性的简便策略,这可能为设计其他用于水分解的复合光催化剂提供一些潜在的机会。

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