首页> 外文期刊>Applied Surface Science >Thermal formation effect of g-C_3N_4 structure on the visible light driven photocatalysis of g-C_3N_4/NiTiO_3 Z-scheme composite photocatalysts
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Thermal formation effect of g-C_3N_4 structure on the visible light driven photocatalysis of g-C_3N_4/NiTiO_3 Z-scheme composite photocatalysts

机译:g-C_3N_4结构对可见光驱动的g-C_3N_4 / NiTiO_3 Z型复合光催化剂的热形成效应

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摘要

The development of efficient visible-light driven photocatalysts has attracted considerable attention in environmental protection and remediation. In this study, the facile thermal polymerization of dicyandiamide (DCDA) to graphitic carbon nitride (g-C3N4) in the presence of nickel titanium trioxide (NiTiO3 ) was investigated for fabricating g-C3N4 and NiTiO3 composite (CNT) photocatalysts to understand the influence of the presence of NiTiO3 on the thermal formation of g-C3N4 layers from DCDA and to find an optimal processing temperature for fabricating CNT photocatalysts. To examine the effect of NiTiO3 on the fabrication of CNT photocatalysts, a gas phase environment (flowing air or nitrogen) and different processing temperatures were employed as preparation variables to control the properties of the CNT photocatalysts. In addition, the CNT photocatalysts were applied for the visible light driven photocatalytic degradation of methylene blue to evaluate their photocatalytic performances. The CNT photocatalyst prepared at T = 500 degrees C showed the highest photocatalytic activity, which was caused by the optimal morphology of g-C3N4 in the composite photocatalysts. The NiTiO3 inorganic phase in the composite photocatalysts acted as a catalyst to accelerate the thermal polymerization to form the g-C3N4 structure and as a promoter to increase the photocatalytic activity during photodegradation. (C) 2018 Elsevier B.V. All rights reserved.
机译:高效可见光驱动的光催化剂的开发在环境保护和修复方面引起了相当大的关注。在这项研究中,研究了在三氧化镍钛(NiTiO3)存在下双氰胺(DCDA)容易地热聚合成石墨氮化碳(g-C3N4)的方法,以制备g-C3N4和NiTiO3复合(CNT)光催化剂,以了解其影响。 NiTiO3的存在对DCDA形成g-C3N4层的热形成的影响,并找到制造CNT光催化剂的最佳工艺温度。为了检查NiTiO3对CNT光催化剂制备的影响,采用气相环境(流动的空气或氮气)和不同的处理温度作为制备变量来控制CNT光催化剂的性能。另外,将CNT光催化剂用于可见光驱动的亚甲基蓝的光催化降解,以评估其光催化性能。在T = 500℃下制备的CNT光催化剂表现出最高的光催化活性,这是由复合光催化剂中g-C3N4的最佳形态引起的。复合光催化剂中的NiTiO3无机相充当催化剂以促进热聚合以形成g-C3N4结构,并充当促进剂以增加光降解过程中的光催化活性。 (C)2018 Elsevier B.V.保留所有权利。

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