Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5465135 | Surface and Coatings Technology | 2017 | 10 Pages |
Abstract
In this paper, the electrochemical behavior of Ir3 + ions in melting NaCl-KCl-CsCl-IrCl3 and the major kinetic parameters were investigated by transient and steady electrochemical techniques from 823 K to 913 K. Effects of the electrochemistry of Ir3 + ions on the microstructure of Ir coatings were also discussed. The electrochemical reduction of Ir3 + ions from the melts was the diffusion-controlled and irreversible reaction with exchange of three electrons at 823-883 K and converted to be a quasi-reversible one with the temperature increasing to 913 K. The major kinetic parameters of Ir3 +/Ir couples, the diffusion coefficient D0 and exchange current density j0, respectively increased from 2.4 Ã 10â 6 cm2/s to 9.2 Ã 10â 6 cm2/s and from 5 mA/cm2 to 16 mA/cm2 with the temperature. With the temperature and applied cathodic potential decreasing, the microstructure of Ir coatings converted from the coarse and preferential oriented columnar grain structure to the fine and unoriented dispersive grain structure.
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Physical Sciences and Engineering
Materials Science
Nanotechnology
Authors
Yongle Huang, Shuxin Bai, Hong Zhang, Yicong Ye, Li''an Zhu,