Moving Electrode Impedance Spectroscopy for Accurate Conductivity Measurements of Corrosive Ionic Media

被引:12
|
作者
Doppelhammer, Nikolaus [2 ]
Pellens, Nick [1 ]
Martens, Johan [1 ]
Kirschhock, Christine E. A. [1 ]
Jakoby, Bernhard [2 ]
Reichel, Erwin K. [2 ]
机构
[1] Katholieke Univ Leuven, Ctr Surface Chem & Catalysis Characterizat & Appl, B-3000 Leuven, Belgium
[2] JKU Linz, Inst Microelect & Microsyst, A-4040 Linz, Austria
基金
奥地利科学基金会;
关键词
conductivity; cell design; electrochemical impedance spectroscopy; adjustable electrode distance; corrosive media; ionic liquids; high accuracy;
D O I
10.1021/acssensors.0c01465
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A measurement cell for the use of accurate conductivity measurements of corrosive ionic media is presented. Based on the concept of moving electrode electrochemical impedance spectroscopy, exceptional measurement accuracy is achieved in a large conductivity range. Extensive testing with corrosive ionic media demonstrated the robust operation of the cell under harsh chemical conditions, up to temperatures of 130 degrees C. The novel design allows monitoring small conductivity changes during chemical reactions in ionic media, for instance, zeolite formation from hydrated ionic liquids.
引用
收藏
页码:3392 / 3397
页数:6
相关论文
共 50 条
  • [1] Ionic conductivity measurements of zirconia under pressure using impedance spectroscopy
    Takebe, H
    Sakamoto, D
    Ohtaka, O
    Fukui, H
    Yoshiasa, A
    Yamanaka, T
    Ota, K
    Kikegawa, T
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2002, 14 (44) : 11507 - 11510
  • [2] Measurements of PEM conductivity by impedance spectroscopy
    Mikhailenko, S. D.
    Guiver, M. D.
    Kaliaguine, S.
    SOLID STATE IONICS, 2008, 179 (17-18) : 619 - 624
  • [3] ELECTRODE EFFECTS IN IONIC-CONDUCTIVITY MEASUREMENTS
    FRANKLIN, AD
    AMERICAN CERAMIC SOCIETY BULLETIN, 1974, 53 (08): : 619 - 619
  • [4] Using Moving Electrode Impedance Spectroscopy to Monitor Particle Sedimentation
    Doppelhammer, Nikolaus
    Pellens, Nick
    Kirschhock, Christine E. A.
    Jakoby, Bernhard
    Reichel, Erwin K.
    IEEE SENSORS JOURNAL, 2021, 21 (08) : 9636 - 9641
  • [5] Ionic conductivity studies on Sr stabilized zirconia by impedance spectroscopy
    M. S. Bhuvaneswari
    S. Selvasekarapandian
    G. Hirankumar
    R. Baskaran
    M. Vijayakumar
    Ionics, 2005, 11 : 362 - 365
  • [6] Ionic conductivity studies on Mg stabilized zirconia by impedance spectroscopy
    Bhuvaneswari, MS
    Selvasekarapandian, S
    Vijayakumar, M
    HiranKumar, G
    Ramprasad, G
    Subramanian, R
    Angelo, PC
    CERAMICS INTERNATIONAL, 2004, 30 (07) : 1631 - 1634
  • [7] Ionic conductivity studies on Sr stabilized zirconia by impedance spectroscopy
    Bhuvaneswari, MS
    Selvasekarapandian, S
    Hirankumar, G
    Baskaran, R
    Vijayakumar, M
    IONICS, 2005, 11 (5-6) : 362 - 365
  • [8] Ionic conductivity studies on LiSmO2 by impedance spectroscopy
    M. Prabu
    S. Selvasekarapandian
    A. R. Kulkarni
    G. Hirankumar
    A. Sakunthala
    Ionics, 2010, 16 : 317 - 321
  • [9] Ionic conductivity studies on LiSmO2 by impedance spectroscopy
    Prabu, M.
    Selvasekarapandian, S.
    Kulkarni, A. R.
    Hirankumar, G.
    Sakunthala, A.
    IONICS, 2010, 16 (04) : 317 - 321
  • [10] Proton conductivity measurements in yttrium barium cerate by impedance spectroscopy
    Coors, W. Grover
    Readey, Dennis W.
    Journal of the American Ceramic Society, 2002, 85 (11): : 2637 - 2640