首页> 外文期刊>International journal of hydrogen energy >Preparation of multiple-doped TiO2 nanotube arrays with nitrogen, carbon and nickel with enhanced visible light photoelectrochemical activity via single-step anodization
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Preparation of multiple-doped TiO2 nanotube arrays with nitrogen, carbon and nickel with enhanced visible light photoelectrochemical activity via single-step anodization

机译:通过一步阳极氧化制备具有增强的可见光光电化学活性的氮,碳和镍的多掺杂TiO2纳米管阵列

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The main objective of this research is to enhance the photocatalytic activity of TiO2 nanotube aligned arrays (TNAs) for the visible light by multiple-doping with nitrogen, nickel and carbon for the first time. This has been achieved through anodization of titanium foils in ethylene glycol based electrolytes containing NH4F and various concentrations of K-2[Ni(CN)(4)]. The method proposed allows for a simple one-step multiple-doping of TNAs during its electrochemical formation. The surface morphology, structure and composition of undoped and Ni-N-C-doped TNAs were investigated by field emission scanning electron microscopy (FESEM), XRD, XPS and EDX. The characterization results indicate that Ni, N and C atoms have been incorporated into the lattice of the TiO2 nanotubes. UV-Vis DRS spectroscopy and photo-electrochemical measurements showed that multiple-doping results in the broadening of the absorption region of visible light and the reduction of bandgap energy. Accordingly, multiple-doping of TNAs improves photogenerated electron hole separation and increases transfer rate of surface charge carriers from the interior to the surface of semiconductors. Under the visible-light irradiation, the average photocurrent density of the optimal multiple-doped TNAs is 10 times greater than that of the undoped TNAs tested under the same conditions. Accordingly, Ni-C-N-doped TNAs may be considered as a promising photocatalytic material for various potential applications like water splitting under sunlight irradiation for hydrogen generation. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究的主要目的是通过首次对氮,镍和碳进行多次掺杂来增强TiO2纳米管排列阵列(TNA)对可见光的光催化活性。这是通过在含有NH4F和各种浓度的K-2 [Ni(CN)(4)]的乙二醇基电解质中对钛箔进行阳极氧化来实现的。所提出的方法允许在其电化学形成过程中对TNA进行简单的一步多掺杂。通过场发射扫描电子显微镜(FESEM),XRD,XPS和EDX研究了未掺杂和Ni-N-C掺杂的TNA的表面形态,结构和组成。表征结果表明,Ni,N和C原子已掺入TiO2纳米管的晶格中。 UV-Vis DRS光谱和光电化学测量表明,多次掺杂导致可见光吸收区域的扩大和带隙能量的减少。因此,TNA的多掺杂改善了光生电子空穴的分离,并提高了表面电荷载流子从内部到半导体表面的转移速率。在可见光照射下,最佳多掺杂TNA的平均光电流密度是在相同条件下测试的未掺杂TNA的平均光电流密度的10倍。因此,Ni-C-N掺杂的TNA可以被认为是用于各种潜在应用的有前途的光催化材料,例如在阳光照射下的水分解以产生氢。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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