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Fabrication of Eu-TiO2 NCs functionalized cotton textile as a multifunctional photocatalyst for dye pollutants degradation

机译:Eu-TiO2 NCs功能化棉纺织物的制备及其作为降解染料污染物的多功能光催化剂

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A modified one step and cost-effective chemical green route has been used to synthesize oleate-capped TiO2 anatase nanocrystals (NCs) doped with different amounts of europium, with high yields and without high-temperature post-calcination processes. Europium doping endowed TiO2 NCs with an intense red luminescence associated with the D-5(0) -> F-7(2) transition of the electronic structure of Eu3+ and was responsible for both the morphological change of the NCs structure (from nanorods to spherical nanoparticles) and the blue shift in the absorption edge respect to the undoped TiO2 NCs. Furthermore, photocatalytic experiments revealed that a low-content (0.5 mol%) Eu3+ doped TiO2 NCs showed the best ability as photocatalyst for the degradation of methylene blue (MB) under both UV and visible light irradiation, even if all the Eu3+ doped oleate-capped TiO2 NCs were more effective under visible light. Moreover, taking advantage of their photocatalytic activity, the 0.5% Eu3+ doped oleate-capped TiO2 photocatalysts has been employed on cotton fabrics. Our results highlighted that functionalization of cotton textile with Eu3+ doped oleate-capped TiO2 NCs imparted new functionalities, such as a high photocatalytic activity toward MB degradation under visible light. In addition, it determined also the change in the wetting behaviour of cotton that switches to a superhydrophobic nature. The obtained fabric also showed stable and robust superhydrophobicity against strong acid and alkaline environments. Multifunctional materials having simultaneously luminescence, superhydrophobicity and visible light photocatalysis are expected to be very useful in many technological applications. (C) 2017 Elsevier B.V. All rights reserved.
机译:一种改进的一步法和具有成本效益的化学绿色路线已用于合成掺有不同数量amounts的油酸酯封端的TiO2锐钛矿纳米晶体(NC),具有高收率且无需高温后煅烧过程。掺杂赋予TiO2 NCs强烈的红色发光,与Eu3 +电子结构的D-5(0)-> F-7(2)跃迁相关,并导致NCs结构的形态变化(从纳米棒到纳米棒)。球形纳米粒子)和相对于未掺杂的TiO2 NC的吸收边缘的蓝移。此外,光催化实验表明,低含量(0.5 mol%)的Eu3 +掺杂的TiO2 NCs在紫外和可见光照射下均表现出最佳的光催化降解亚甲基蓝(MB)的能力,即使所有Eu3 +掺杂的油酸酯也是如此。封口的TiO2 NC在可见光下更有效。而且,利用它们的光催化活性,在棉织物上已经使用了0.5%的Eu3 +掺杂的油酸酯封端的TiO2光催化剂。我们的结果强调,用Eu3 +掺杂的油酸酯封端的TiO2 NCs对棉纺织品进行功能化赋予了新功能,例如在可见光下对MB降解具有高光催化活性。另外,它还确定了棉花的润湿行为的变化,该变化转变为超疏水性质。所获得的织物在强酸和强碱环境下也表现出稳定和强健的超疏水性。同时具有发光,超疏水性和可见光光催化作用的多功能材料有望在许多技术应用中非常有用。 (C)2017 Elsevier B.V.保留所有权利。

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