Study on morphology evolution of anodic tantalum oxide films in different using stages of H2SO4/HF electrolyte

被引:21
|
作者
Chen, Wenzhi [1 ]
Tu, Qiaomiao [1 ]
Wu, Hongliu [1 ]
Zhao, Changli [1 ]
Yao, Xuan [1 ]
Fan, Wenqi [1 ]
Zhang, Shaoxiang [2 ]
Ni, Jiahua [1 ]
Zhang, Xiaonong [1 ,2 ]
机构
[1] Shanghai Jiao Tong Univ, State Key Lab Met Matrix Composites, Sch Mat Sci & Engn, Shanghai 200240, Peoples R China
[2] Suzhou Origin Med Technol Co Ltd, Suzhou 215513, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
Ta2O5 nanotube arrays; free-standing membranes; spark discharge films; anodization; morphology evolution; TIO2 NANOTUBE ARRAYS; NANOPOROUS TA2O5 FILMS; ELECTROCHEMICAL FORMATION; ANODIZATION; FABRICATION; NANOSTRUCTURES; GROWTH;
D O I
10.1016/j.electacta.2017.03.024
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Three structures: free-standing Ta2O5 nanotube membranes, adhered Ta2O5 nanotube arrays and spark discharge Ta2O5 films, have been fabricated respectively by anodizing pure Ta for one hour in three different using stages of the same original concentration electrolyte consisting of 96 vol% H2SO4 (95-98%) and 4 vol% HF (48%) in this work. Stage I: In the 0-10 hours used electrolyte, patchy free-standing Ta2O5 nanotube membranes formed within the potential range of 10 V-70 V; Stage II: In the 30-50 hours used solution, highly ordered amorphous adhered Ta2O5 nanotube arrays with top diameter of 40 nm-270 nm and length of 5 mu m-122 mu m were fabricated during 10 V-170 V; Stage III: When the using time of electrolyte exceeded 50 hours, spark discharge films with Ta2O5 crystal phase formed at 180 V-200 V, and nanotube structure still remained partially in the spark discharge films. The diameter of Ta2O5 nanotubes increases with the increasing of voltage. In addition to Ta and O elements, adhered Ta2O5 nanotube array films contain a small amount of S and F elements, but the spark discharge Ta2O5 films do not consist of S element. Adhered Ta2O5 nanotube arrays and spark discharge Ta2O5 films show excellent hydrophilicity. The current density-time curves of adhered Ta2O5 nanotube arrays obtained at high voltage (70 V-170 V) exhibit unique fluctuation phenomena and the current oscillation behaviors have a significant influence on the morphologies of nanotube array. Moreover, irritating gases emission on anode and light yellow sediment on cathode occur in the anodization process of Ta2O5 nanotube arrays. This work obtains Ta2O5 nanotube arrays with various structure parameters and expands anodic Ta2O5 film fabrication windows using HF/H2SO4 electrolyte at different stages, meanwhile provides the detailed analyses for growth mechanism of Ta2O5 nanotube arrays. Our results are expected to provide references for the nanostructure preparation on the surface of other metals and alloys by anodization. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:140 / 153
页数:14
相关论文
共 50 条
  • [31] Efficient Recovery of Niobium and Tantalum from Ferrocolumbium Tantalum by a Continuous Leaching Process Using HF − H2SO4 − HNO3 Synergistic System
    Jianfang Lyu
    Yong Liu
    Zhiyuan Ma
    Xianjin Lyu
    Jikui Zhou
    Mining, Metallurgy & Exploration, 2022, 39 : 1763 - 1770
  • [32] EFFECT OF THICKNESS OF ANODIC OXIDE-FILMS ON RATE OF OXYGEN EVOLUTION REACTION AT PT IN H2SO4 SOLUTION .1. GROWTH AT CONSTANT CURRENT
    DAMJANOVIC, A
    WARD, AT
    OJEA, M
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1974, 121 (09) : 1186 - 1190
  • [33] ON THE SURFACE OXIDATION OF A GOLD ELECTRODE IN IN H2SO4 ELECTROLYTE
    PEUCKERT, M
    COENEN, FP
    BONZEL, HP
    SURFACE SCIENCE, 1984, 141 (2-3) : 515 - 532
  • [34] Simulation Experiments on On-Line Isolation of Element 106 (Seaborgium, Sg) and Study of Its Chemistry in H2SO4 and H2SO4/HF Solutions
    L. I. Guseva
    Z. Szeglovski
    V. P. Domanov
    B. Kubica
    G. S. Tikhomirova
    S. N. Timokhin
    A. V. Yakushev
    A. G. Belov
    Radiochemistry, 2002, 44 (4) : 342 - 346
  • [35] Specific Features of Anodic Dissolution of Copper in H2SO4 + H2O and H2SO4 + CuSO4 + H2O Systems
    V. M. Sribnyi
    O. I. Kuntyi
    V. T. Yavors'kyi
    Materials Science, 2001, 37 : 524 - 527
  • [36] CYCLING ANODIC COATINGS ON PURE AND ANTIMONIAL LEAD IN H2SO4
    BURBANK, J
    REPORT OF NRL PROGRESS, 1970, : 24 - &
  • [37] IS ANODIC PROTECTION EFFECTIVE IN PREVENTING STEEL CORROSION IN H2SO4
    STAMMEN, JM
    MATERIALS PROTECTION, 1968, 7 (12): : 33 - &
  • [39] Vickers microhardness of AlSi(Cu) anodic oxide layers formed in H2SO4 at low temperature
    Fratila-Apachitei, LE
    Duszczyk, J
    Katgerman, L
    SURFACE & COATINGS TECHNOLOGY, 2003, 165 (03): : 309 - 315
  • [40] O-2 EVOLUTION ON PD IN H2SO4
    GAMBOA, ME
    GENESCA, J
    AFINIDAD, 1988, 45 (413) : 39 - 42