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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Synthesis of a heterojunction CoTiO3/Co3O4 nano-composite thin film with superior photocatalytic activity and reusability: Effect of calcination temperature on phase transformation and effect of oxidants on enhanced degradation of Indo Light Blue dye
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Synthesis of a heterojunction CoTiO3/Co3O4 nano-composite thin film with superior photocatalytic activity and reusability: Effect of calcination temperature on phase transformation and effect of oxidants on enhanced degradation of Indo Light Blue dye

机译:具有优异的光催化活性和可重复用来的异质结CotiO3 / CO3O4纳米复合薄膜的合成:煅烧温度对氧化剂对靛蓝染料增强降解的相变性的影响及其影响

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CoTiO3/Co3O4 heterojunction nano-composite was grown by a coprecipitation method at low temperature. The effects of calcination temperature on the phase composition, crystallization and morphology of the cobalt titanates were also examined. Notably, the novel nano-crystalline cobalt titanate with a narrow band gap to coulpe with cobalt oxide (Co3O4) by a direct coprecipitation method (CoTiO3/Co3O4) was attained. The Nano-crystalline samples were systematically characterized by TG/DTG, XRD, DRS, FESEM, FT-IR, EDX and XPS techniques. The results showed that CoTiO3/Co3O4 nano-composite hetero-junction was formed at 650 degrees C, while at 750 degrees C a single phase CoTiO3 nano-crystal was prepared. Photocatalytic activities indicated the heterostructured CoTiO3/Co3O4 nano-composite exhibited much higher photocatalytic activity for degradation of Indo Light blue under visible light irradiation with added oxidants (K2S2O8, KBrO3, and H2O2). The charge separation of CoTiO3 and Co3O4 would result the enhanced visible-light harvesting ability and longer lifetime of photogenerated charge carriers. The stability and reusability of catalysts during four successive cycles were resulted. Finally, a possible mechanism responsible for the charge separation and improved photocatalytic activity was proposed. (c) 2019 Elsevier B.V. All rights reserved.
机译:CotiO3 / CO3O4异质结纳米复合物在低温下通过共沉淀法生长。还研究了煅烧温度对钴钛酸钴的相成分,结晶和形态的影响。值得注意的是,通过通过直接共沉淀法(CotiO3 / CO3O4)获得与含有钴氧化物(CO3O4)的窄带隙的新型纳米结晶钴钛酸盐。通过TG / DTG,XRD,DRS,FESEM,FT-IR,EDX和XPS技术,系统地表征了纳米结晶样品。结果表明,在650℃下形成CotiO3 / CO3O4纳米复合杂结,而在750℃下,制备单相CotiO3纳米晶体。光催化活动表明,异质结构CotiO3 / Co3O4纳米复合材料表现出更高的光催化活性,用于在可见光照射下的靛蓝浅蓝色,添加氧化剂(K2S2O8,Kbro3和H 2 O 2)下的可见光浅蓝色。 CotiO3和CO3O4的电荷分离将导致增强的可见光收获能力和更长的光生电电荷载体的寿命更长。导致催化剂在四个连续循环期间的稳定性和可重用性。最后,提出了负责电荷分离和改善的光催化活性的可能机制。 (c)2019 Elsevier B.v.保留所有权利。

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