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A new simple approach to prepare rare-earth metals-modified TiO 2 nanotube arrays photoactive under visible light: Surface properties and mechanism investigation

机译:一种制备在可见光下具有光活性的稀土金属修饰的TiO 2纳米管阵列的新方法:表面性质和机理研究

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Application of Ti90RE10alloys (RE?=?Ho, Er, Nd, Y, Ce, Tm) as a working electrode, instead of Ti pure foil in anodic oxidation in a fluoride-based electrolyte, resulted in formation of well-ordered nanotubes made of TiO2and RE2O3mixture, which could be efficiently used for pollutant removal from water and air phase upon UV and visible irradiation and easily separable from the reaction mixture to recycle. The as-prepared NTs were characterized by scanning electron microscopy (SEM), energy-dispersive spectroscopy (EDX), diffuse reflectance spectroscopy (DRS), luminescence spectroscopy, X-ray diffraction (XRD), and X-ray photoelectron spectroscopy (XPS). The photocatalytic activity of the synthesized samples was investigated used phenol and toluene as a model compounds to follow degradation kinetics. The influence of the RE metals on the photoelectrochemical performance of modified TiO2NTs was investigated. Surface morphology analysis showed formation of uniform and vertically oriented NTs structures with an open tube top and smooth walls. The results of EDX, XRD and XPS analysis proved that RE ions exist as surface compounds (RE3+oxides). Visible light induced photoactivity (both photocatalytic and photoelectrochemical) is mostly pronounced in the presence of nanotubes obtained by anodic oxidation of Ti90Ho10alloy. These nanotubes are able to degrade toluene in the gas phase even by irradiation of low-powered light source, such as light emitting diodes (λmax?=?465?nm). Photocatalytic test of phenol degradation in the presence of scavenger indicates that photogenerated electrons and superoxide radicals play a meaningful role in the photocatalytic degradation of pollutants under visible irradiation. In addition, the photoelectrochemical tests performed under the influence of visible light irradiation confirmed that the RE-modification of TiO2NTs caused a significant increase of photocurrent (up to 10 times higher). The new and original results on the preparation of RE2O3/TiO2nanotubes obtained in one step anodic oxidation and photocatalytic activity in aqueous and gas phases represent an important contribution then will benefit photocatalytic surfaces preparation technologies.
机译:使用Ti90RE10合金(RE?=?Ho,Er,Nd,Y,Ce,Tm)作为工作电极,代替纯钛箔在氟化物基电解质中进行阳极氧化,导致形成有序的纳米管TiO2和RE2O3混合物可有效地在紫外线和可见光照射下从水和空气中去除污染物,并易于从反应混合物中分离出来进行再循环。通过扫描电子显微镜(SEM),能量色散光谱(EDX),漫反射光谱(DRS),发光光谱,X射线衍射(XRD)和X射线光电子能谱(XPS)对制成的NT进行表征。以苯酚和甲苯为模型化合物,考察了降解动力学,研究了合成样品的光催化活性。研究了稀土金属对改性TiO2NTs光电化学性能的影响。表面形态分析表明形成了均匀且垂直取向的NTs结构,具有开放的管顶和光滑的壁。 EDX,XRD和XPS分析的结果证明RE离子作为表面化合物(RE3 +氧化物)存在。可见光诱导的光活性(光催化和光电化学两者)在通过Ti90Ho10合金的阳极氧化获得的纳米管的存在下最为明显。这些纳米管即使在低功率的光源例如发光二极管(λmax≥465nm)的照射下也能够使甲苯在气相中降解。在清除剂的存在下对苯酚降解的光催化测试表明,在可见光下,光生电子和超氧自由基在污染物的光催化降解中起着重要作用。另外,在可见光照射的影响下进行的光电化学测试证实,TiO2NTs的RE改性引起光电流的显着增加(高达10倍)。一步获得的RE2O3 / TiO2纳米管的制备的新的和原始的结果代表了在水相和气相中的阳极氧化和光催化活性,这将为光催化表面制备技术带来重要的贡献。

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