二氧化钛纳米管阵列制备方式对其光催化性能的影响:在对硝基苯胺降解中的应用

IF 1.5 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Micro & Nano Letters Pub Date : 2023-03-22 DOI:10.3390/micro3010025
Nisreen Alshibeh Alwattar, F. Vacandio, L. Vassalo, T. Djenizian, B. Coulomb, J. Boudenne
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引用次数: 1

摘要

本研究的目的是研究二氧化钛(TiO2)纳米管薄膜的光活性对不同结构因素(孔径、管长、管壁厚度和结晶度)的影响。以对硝基苯胺为探针,考察了二氧化钛纳米管层在紫外光照射下的光催化活性。采用电化学阳极氧化法制备自组织二氧化钛纳米管薄膜,并将其溅射到硅(Si)上。然后在450 ~ 900℃的不同温度下对非晶钛纳米管层进行退火,以形成结晶相。利用表面分析技术和扫描电镜对膜的结构和形貌进行了表征。通过紫外分光光度法监测对硝基苯胺的紫外降解和离子色谱法测定对硝基苯胺的硝化产率来评价制备的TiO2薄膜的光催化活性。450℃退火钛纳米管的光催化活性最高。金红石的存在-在900°c的退火温度下获得-似乎降低了对硝基苯胺的光降解收率。最后,由钛箔制备的TiO2纳米管显示出最有效的光催化性能。
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Effects of Mode of Preparation of Titanium Dioxide Nanotube Arrays on Their Photocatalytic Properties: Application to p-Nitroaniline Degradation
The aim of this study was to investigate the photoactivity of dioxide titanium (TiO2) nanotube films depending on different structure factors including pore size, tube length, tube wall thickness and crystallinity. Aqueous p-nitroaniline was used as a probe to assess the photocatalytic activity of titanium dioxide nanotube layers under UV irradiations. Self-organized titanium dioxide nanotube thin films were prepared by electrochemical anodization of titanium (Ti) foils and Ti thin films sputtered onto silicon (Si). The amorphous as-formed titanium nanotube layers were then annealed at different temperatures ranging from 450 to 900 °C in order to form crystalline phases. The structure and the morphology of the films were characterized by surface analysis techniques and scanning electron microscopy, respectively. The photocatalytic activity of the resulting TiO2 thin films was evaluated by monitoring the UV degradation of p-nitroaniline by UV spectrophotometry and by determining nitrification yields of by ion chromatography. The highest photocatalytic activity was exhibited for titanium nanotubes annealed at 450 °C. The presence of rutile -obtained for an annealing temperature of 900 °C—appeared to reduce the photodegradation yield of p-nitroaniline. Finally, the TiO2 nanotubes obtained from Ti foils revealed the most efficient photocatalytic properties.
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来源期刊
Micro & Nano Letters
Micro & Nano Letters 工程技术-材料科学:综合
CiteScore
3.30
自引率
0.00%
发文量
58
审稿时长
2.8 months
期刊介绍: Micro & Nano Letters offers express online publication of short research papers containing the latest advances in miniature and ultraminiature structures and systems. With an average of six weeks to decision, and publication online in advance of each issue, Micro & Nano Letters offers a rapid route for the international dissemination of high quality research findings from both the micro and nano communities. Scope Micro & Nano Letters offers express online publication of short research papers containing the latest advances in micro and nano-scale science, engineering and technology, with at least one dimension ranging from micrometers to nanometers. Micro & Nano Letters offers readers high-quality original research from both the micro and nano communities, and the materials and devices communities. Bridging this gap between materials science and micro and nano-scale devices, Micro & Nano Letters addresses issues in the disciplines of engineering, physical, chemical, and biological science. It places particular emphasis on cross-disciplinary activities and applications. Typical topics include: Micro and nanostructures for the device communities MEMS and NEMS Modelling, simulation and realisation of micro and nanoscale structures, devices and systems, with comparisons to experimental data Synthesis and processing Micro and nano-photonics Molecular machines, circuits and self-assembly Organic and inorganic micro and nanostructures Micro and nano-fluidics
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