Phase identification in electrodeposited Ag-Cd alloys by anodic linear sweep voltammetry and X-ray diffraction techniques
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2011
Authors
Dobrovolska, TsKrastev, I

Jović, Borka M
Jović, Vladimir D

Beck, G

Lačnjevac, Uroš

Zielonka, A
Article (Published version)

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During electrodeposition of Ag-Cd alloy coatings phenomena of self-organization and formation of spatio-temporal structures can be observed. The difficulties in the determination of the local phase composition in the observed structures are mostly connected with the strong heterogeneity of the coatings consisting of several alloy phases. The results obtained with electrochemical techniques, such as anodic linear sweep voltammetry (ALSV) are compared with results obtained by X-ray analysis and SEM. In the proposed electrolyte for dissolution of Ag-Cd alloy coatings (12 M LiCl + 0.1 M HCl) the dissolution peaks of the pure metals, Ag and Cd, have a potential difference of about 700 mV. The peaks, corresponding to the alloy phases, are situated between the dissolution potentials of Ag and Cd, their height depending on the deposition current density, i.e. on the percentage content of the alloy. Different phases (Ag. Ag3Cd, AgCd, AgCd3 and pure Cd) are observed in the coatings deposited at ...different cathodic potentials. A good correlation between the XRD spectra of the Ag-Cd alloy coatings and the ALSV data obtained during their dissolution is established.
Keywords:
XRD techniques / Silver-cadmium alloys / Self-organization / Electrodeposition / ALSVSource:
Electrochimica Acta, 2011, 56, 11, 4344-4350Publisher:
- Pergamon-Elsevier Science Ltd, Oxford
Funding / projects:
- Deutsche Forschungsgemeinschaft (DFG)German Research Foundation (DFG) [436 BUL 113/97/0-4]
- Ministry of Science and Technological Development of the Republic of SerbiaMinistry of Education, Science & Technological Development, Serbia
DOI: 10.1016/j.electacta.2011.01.028
ISSN: 0013-4686
WoS: 000290692700085
Scopus: 2-s2.0-79954599445
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Institut za multidisciplinarna istraživanjaTY - JOUR AU - Dobrovolska, Ts AU - Krastev, I AU - Jović, Borka M AU - Jović, Vladimir D AU - Beck, G AU - Lačnjevac, Uroš AU - Zielonka, A PY - 2011 UR - http://rimsi.imsi.bg.ac.rs/handle/123456789/437 AB - During electrodeposition of Ag-Cd alloy coatings phenomena of self-organization and formation of spatio-temporal structures can be observed. The difficulties in the determination of the local phase composition in the observed structures are mostly connected with the strong heterogeneity of the coatings consisting of several alloy phases. The results obtained with electrochemical techniques, such as anodic linear sweep voltammetry (ALSV) are compared with results obtained by X-ray analysis and SEM. In the proposed electrolyte for dissolution of Ag-Cd alloy coatings (12 M LiCl + 0.1 M HCl) the dissolution peaks of the pure metals, Ag and Cd, have a potential difference of about 700 mV. The peaks, corresponding to the alloy phases, are situated between the dissolution potentials of Ag and Cd, their height depending on the deposition current density, i.e. on the percentage content of the alloy. Different phases (Ag. Ag3Cd, AgCd, AgCd3 and pure Cd) are observed in the coatings deposited at different cathodic potentials. A good correlation between the XRD spectra of the Ag-Cd alloy coatings and the ALSV data obtained during their dissolution is established. PB - Pergamon-Elsevier Science Ltd, Oxford T2 - Electrochimica Acta T1 - Phase identification in electrodeposited Ag-Cd alloys by anodic linear sweep voltammetry and X-ray diffraction techniques EP - 4350 IS - 11 SP - 4344 VL - 56 DO - 10.1016/j.electacta.2011.01.028 ER -
@article{ author = "Dobrovolska, Ts and Krastev, I and Jović, Borka M and Jović, Vladimir D and Beck, G and Lačnjevac, Uroš and Zielonka, A", year = "2011", abstract = "During electrodeposition of Ag-Cd alloy coatings phenomena of self-organization and formation of spatio-temporal structures can be observed. The difficulties in the determination of the local phase composition in the observed structures are mostly connected with the strong heterogeneity of the coatings consisting of several alloy phases. The results obtained with electrochemical techniques, such as anodic linear sweep voltammetry (ALSV) are compared with results obtained by X-ray analysis and SEM. In the proposed electrolyte for dissolution of Ag-Cd alloy coatings (12 M LiCl + 0.1 M HCl) the dissolution peaks of the pure metals, Ag and Cd, have a potential difference of about 700 mV. The peaks, corresponding to the alloy phases, are situated between the dissolution potentials of Ag and Cd, their height depending on the deposition current density, i.e. on the percentage content of the alloy. Different phases (Ag. Ag3Cd, AgCd, AgCd3 and pure Cd) are observed in the coatings deposited at different cathodic potentials. A good correlation between the XRD spectra of the Ag-Cd alloy coatings and the ALSV data obtained during their dissolution is established.", publisher = "Pergamon-Elsevier Science Ltd, Oxford", journal = "Electrochimica Acta", title = "Phase identification in electrodeposited Ag-Cd alloys by anodic linear sweep voltammetry and X-ray diffraction techniques", pages = "4350-4344", number = "11", volume = "56", doi = "10.1016/j.electacta.2011.01.028" }
Dobrovolska, T., Krastev, I., Jović, B. M., Jović, V. D., Beck, G., Lačnjevac, U.,& Zielonka, A.. (2011). Phase identification in electrodeposited Ag-Cd alloys by anodic linear sweep voltammetry and X-ray diffraction techniques. in Electrochimica Acta Pergamon-Elsevier Science Ltd, Oxford., 56(11), 4344-4350. https://doi.org/10.1016/j.electacta.2011.01.028
Dobrovolska T, Krastev I, Jović BM, Jović VD, Beck G, Lačnjevac U, Zielonka A. Phase identification in electrodeposited Ag-Cd alloys by anodic linear sweep voltammetry and X-ray diffraction techniques. in Electrochimica Acta. 2011;56(11):4344-4350. doi:10.1016/j.electacta.2011.01.028 .
Dobrovolska, Ts, Krastev, I, Jović, Borka M, Jović, Vladimir D, Beck, G, Lačnjevac, Uroš, Zielonka, A, "Phase identification in electrodeposited Ag-Cd alloys by anodic linear sweep voltammetry and X-ray diffraction techniques" in Electrochimica Acta, 56, no. 11 (2011):4344-4350, https://doi.org/10.1016/j.electacta.2011.01.028 . .