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首页> 外文期刊>Nanoscience and Nanotechnology Letters >Anodically Formed TiO_(2) Thin Films: Evidence for a Multiparameter Dependent Photocurrent-Structure Relationship
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Anodically Formed TiO_(2) Thin Films: Evidence for a Multiparameter Dependent Photocurrent-Structure Relationship

机译:阳极形成的TiO_(2)薄膜:依赖于多参数的光电流-结构关系的证据

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A series of nanostructured TiO_(2) thin films, characterized from the presence of an ordered array of vertically-aligned titania nanotubes, were prepared by anodic oxidation of titanium foils, and compared with a reference sample prepared by sol-gel dip-coating. The size of the nanotubes and their packing density were modified by changing anodization parameters, but using the same type of electrochemical bath in order to prepare a homogeneous set of titania thin films. These thin films were investigated in terms of photoelectrochemical responses and nanostructure characteristics. The nanostructured thin films show a photocurrent around twenty times higher than the reference film per unit of illuminated area, and over hundred times higher per gram of TiO_(2) present in the film well demonstrating that the nanostructured film possesses significantly higher performances in the generation of photocurrent. In terms of relationship between characteristics and packing density of the titania nanotubes, as well as photocurrent generation, a complex trend was observed, with the photocurrent density passing through a minimum as a function of the anodization time (in the 1-6 h range) and through a maximum as a function of the anodization voltage (in the 20-60 V range), using as electrolyte an ethylene glycol solution containing 0.3 wt(percent) NH_(4)F and 2 wt(percent) water. This trend was interpreted in terms of effect of the anodization parameters on various characteristics of the nanotube array (packing density, geometrical surface area, nanotube wall-thickness and length).
机译:通过钛箔的阳极氧化制备了一系列纳米结构的TiO_(2)薄膜,其特征在于存在垂直排列的二氧化钛纳米管的有序阵列,并将其与通过溶胶-凝胶浸涂法制备的参考样品进行比较。通过改变阳极氧化参数来改变纳米管的尺寸及其堆积密度,但是使用相同类型的电化学浴以制备均匀的二氧化钛薄膜组。从光电电化学响应和纳米结构特征方面研究了这些薄膜。纳米结构的薄膜显示出每单位照明面积的光电流比参考膜高约二十倍,并且薄膜中存在的每克TiO_(2)的光电流高出一百倍以上,这表明纳米结构的薄膜在发电方面具有显着更高的性能。的光电流。根据二氧化钛纳米管的特性和堆积密度之间的关系以及光电流的产生,观察到了复杂的趋势,其中光电流密度作为阳极氧化时间的函数而经过最小值(在1-6 h范围内)使用包含0.3 wt%NH_(4)F和2 wt%水的乙二醇溶液作为电解质,并根据阳极氧化电压的最大值(在20-60 V范围内)变化。可以根据阳极氧化参数对纳米管阵列各种特性(堆积密度,几何表面积,纳米管壁厚和长度)的影响来解释这种趋势。

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