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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Ni-, Pt- and (Ni/Pt)-doped TiO2 nanophotocatalysts: A smart approach for sustainable degradation of Rhodamine B dye
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Ni-, Pt- and (Ni/Pt)-doped TiO2 nanophotocatalysts: A smart approach for sustainable degradation of Rhodamine B dye

机译:Ni,Pt和(Ni / Pt)掺杂的TiO2纳米光催化剂:罗丹明B染料可持续降解的明智方法

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Ni (1 wa%)-, Pt (1 wt%)- and [Ni (0.5 wt%)/Pt (0.5 wt%)]-doped TiO2 nanoporous catalysts have been successfully obtained through a facile two-step hydrothermal route. TiO2 crystallizes mostly in the anatase phase and acts as a mesoporous matrix. Meanwhile, Ni, Pt and Ni/Pt dopants form small nanoparticles (NPs) (3-95 nm in diameter) which are hosted by the TiO2 framework. The resulting composites exhibit a rather large surface area, in the range of 186-200 m(2)/g. The band gap energy reduces from 3.03 eV for the undoped TiO2 to 2.15 eV for the Pt-loaded TiO2. As a consequence, absorption expands toward the visible light range. The photodegradation of Rhodamine B dye in aqueous medium has been investigated under UV-vis light irradiation. The presence of Ni, Pt and Ni/Pt NPs significantly enhances the photocatalytic activity of the material. Furthermore, the Ni-doped TiO2 shows ferromagnetic behavior at room temperature, which makes its recovery and subsequent fast reutilization possible. Interestingly, this sample also exhibits the best stability upon recycling. Considering all the current challenges in sustainable water remediation, these new photocatalysts could find applications in real environmental contexts in the near future. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过简便的两步水热法已成功获得了Ni(1 wa%),Pt(1 wt%)和[Ni(0.5 wt%)/ Pt(0.5 wt%)]掺杂的TiO2纳米多孔催化剂。 TiO2主要在锐钛矿相中结晶,并充当中孔基质。同时,Ni,Pt和Ni / Pt掺杂剂形成小的纳米颗粒(NPs)(直径为3-95 nm),由TiO2骨架托管。所得的复合材料表现出相当大的表面积,范围为186-200 m(2)/ g。带隙能量从未掺杂的TiO2的3.03 eV降至载有Pt的TiO2的2.15 eV。结果,吸收向可见光范围扩展。在紫外可见光照射下,研究了若丹明B染料在水性介质中的光降解。 Ni,Pt和Ni / Pt NP的存在显着增强了材料的光催化活性。此外,Ni掺杂的TiO2在室温下表现出铁磁性能,这使其恢复和随后的快速再利用成为可能。有趣的是,该样品在回收后也表现出最佳的稳定性。考虑到目前可持续水修复中的所有挑战,这些新型光催化剂可在不久的将来在实际环境中找到应用。 (C)2015 Elsevier B.V.保留所有权利。

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