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Development of stacked porous tantalum oxide layers by anodization

机译:通过阳极氧化开发堆叠的多孔钽氧化物层

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摘要

Interest in nanoporous tantalum oxide (Ta2O5) has been increasing due to its high variety of applications, from protective coatings, photocatalysts to biomedical devices. Anodization is a surface modification technique, which is inexpensive, versatile, easily scalable and widely used to produce these nanostructures. In this study, Ta2O5 nanoporous surfaces were produced by anodization in HF-free electrolyte composed of ethylene glycol, water and ammonium fluoride (NH4F) with different anodization parameters (electrolyte concentration, applied potential and time). The surface morphology of each sample was investigated by scanning electron microscopy (SEM) and the sample with the more uniform porous nanostructure was characterized in terms of cross-section morphology, chemical composition and crystalline structure. The concentration of NH4F and applied potential demonstrated a significant impact on current-density-time curve, and thereafter in surface morphology. Multiple thin porous nanolayers were formed under strong electrochemical conditions (very high current density and electrolyte temperature). Through chemical analysis, it was possible to detect the presence of fluoride, which is consistent with an amorphous Ta2O5 layer with fluoride ions incorporation. Thereby, managing the electrochemical conditions is crucial to control the morphology of an anodic Ta2O5 layer.
机译:纳米多孔钽氧化物(Ta2O5)的应用范围广泛,从保护涂层,光催化剂到生物医学设备,人们对它的兴趣不断增加。阳极氧化是一种表面改性技术,其价格便宜,用途广泛,易于扩展并且广泛用于生产这些纳米结构。在这项研究中,Ta2O5纳米多孔表面是通过在无乙二醇的由乙二醇,水和氟化铵(NH4F)组成的无阳极氧化中进行阳极氧化而制成的,阳极氧化参数(电解质浓度,施加的电势和时间)不同。通过扫描电子显微镜(SEM)研究每个样品的表面形态,并通过横截面形态,化学组成和晶体结构表征具有更均匀的多孔纳米结构的样品。 NH4F的浓度和施加的电势对电流密度-时间曲线及其后的表面形态具有显着影响。在强电化学条件下(非常高的电流密度和电解质温度)形成了多个薄的多孔纳米层。通过化学分析,可以检测到氟化物的存在,这与掺入氟化物离子的非晶态Ta2O5层相一致。因此,管理电化学条件对于控制阳极Ta2O5层的形态至关重要。

著录项

  • 来源
    《Applied Surface Science》 |2020年第1期|145542.1-145542.10|共10页
  • 作者单位

    Univ Minho Phys Dept CFUM UP Campus Azurem P-4800058 Guimaraes Portugal;

    INL Int Iberian Nanotechnol Lab Av Mestre Jose Veiga S-N P-4715330 Braga Portugal;

    Univ Minho Phys Dept CFUM UP Campus Gualtar P-4710057 Braga Portugal;

    Univ Minho Phys Dept CFUM UP Campus Azurem P-4800058 Guimaraes Portugal|Univ Coimbra SEG CEMMPRE Mech Engn Dept P-3030788 Coimbra Portugal;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tantalum; Nanostructure; One-step anodization; Nanolayers;

    机译:钽纳米结构一步阳极氧化;纳米层;

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