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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Preparation of short, robust and highly ordered TiO2 nanotube arrays and their applications as electrode
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Preparation of short, robust and highly ordered TiO2 nanotube arrays and their applications as electrode

机译:短而坚固且高度有序的TiO2纳米管阵列的制备及其在电极中的应用

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摘要

The short, robust and highly ordered TiO2 nanotube arrays (TNAs) electrode was prepared by sonoelectrochemical anodization of titanium in HF-H2O electrolyte solution (referred as short TNAs, STNAs). The self-organized arrays of titania nanotubes of approximately 12-65 nm in diameter and 75-280 nm in length can be synthesized at anodic voltage of 5-20 V. The electron transport process within the STNAs electrode was much favorable in comparison with that for the long TNAs electrode synthesized by conventional magnetic agitation technique (referred as long TNAs, LTNAs), as confirmed by the obviously enhanced photocurrent response of STNAs electrode either in 0.02 M Na2SO4 electrolyte solution or in different concentrations of glucose solution or under different intensities of UV illumination. To investigate their photoelectrochemical applications, degradation of tetracycline, a typical pharmaceutical and personal care products (PPCPs), was carried out using photoelectrocatalytic (PEC) means, comparing with electrochemical (EC) and photocatalytic (PC) processes. The kinetic constant of the PEC process of STNAs electrode was ~3.17 times as high as its PC process. The color removal rate of tetracycline by STNAs electrode achieved 81% within 3 h, which was 21% higher than that for LTNAs electrode. In degrading tetracycline, 41% of TOC was mineralized using the STNAs electrode against 23% using LTNAs electrode under similar conditions. Such kind of titania nanotubes will have many potential applications in various areas as an outstanding photoelectrochemical material.
机译:通过在HF-H2O电解质溶液(称为短TNA,STNA)中对钛进行超声电化学阳极氧化,制备了短而坚固且高度有序的TiO2纳米管阵列(TNAs)电极。可以在5-20 V的阳极电压下合成直径约12-65 nm,长度约75-280 nm的二氧化钛纳米管的自组织阵列。与之相比,STNAs电极内的电子传输过程非常有利。对于常规磁搅拌技术合成的长TNAs电极(称为长TNAs,LTNAs),可以通过STNAs电极在0.02 M Na2SO4电解质溶液中或在不同浓度的葡萄糖溶液中或在不同强度下的光电流响应明显增强来确认紫外线照明。为了研究它们的光电化学应用,使用光催化(PEC)手段与电化学(EC)和光催化(PC)方法进行比较,降解了典型的药物和个人护理产品(PPCP)四环素。 STNAs电极的PEC过程的动力学常数是其PC过程的约3.17倍。 STNAs电极在3 h内对四环素的脱色率达到81%,比LTNAs电极高21%。在降解四环素时,在相似条件下,使用STNAs电极矿化了41%的TOC,而使用LTNAs电极矿化了23%的TOC。这种二氧化钛纳米管作为一种出色的光电化学材料将在各个领域具有许多潜在的应用。

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