Electrochemical corrosion characteristics of silica sol-derived alumina-zirconia and alumina-yttria stabilized zirconia amorphous nanocomposite coating
| Title | Electrochemical corrosion characteristics of silica sol-derived alumina-zirconia and alumina-yttria stabilized zirconia amorphous nanocomposite coating |
| Publication Type | Journal Article |
| Year of Publication | 2026 |
| Authors | Praveen, D, Lenin, N, Surendhiran, S, Pandey, P, Selvaraj, K, Karthik, A, Raja, T |
| Journal | Chemistryselect |
| Volume | 11 |
| Issue | 30 |
| Pagination | e73970 |
| Date Published | AUG |
| Type of Article | Article |
| ISSN | 2365-6549 |
| Keywords | alumina-(yttria) zirconia, alumina-zirconia, electrochemical corrosion, linear sweep voltammetry, nanostructured coating |
| Abstract | Sol-gel-derived amorphous Al2O3-ZrO2/SiO2 (AZS) and Al2O3-(Y2O3) ZrO2/SiO2 (AYZS) nanocomposite coatings were developed on stainless steel (SS) 316L specimens. The corrosion resistance of identical AZS and AYZS specimens in 5 wt.% HCl, H2SO4, and NaCl electrolytes was investigated using electrochemical polarization plots and impedance spectroscopy. The EIS results indicate that the corrosion resistance follows the order NaCl > H2SO4 > HCl, with the highest charge-transfer resistance observed in the NaCl electrolyte at low frequencies. Moreover, the lower current density observed in the NaCl and H2SO4 electrolytes suggests that the coatings were relatively crack- and defect-free, thereby providing superior corrosion protection. Surface-coating stability, degradation, and corrosion products were observed using SEM and optical microscopy. The developed silica sol-based AZS and AYZS ceramic coatings provide enhanced protection for metallic specimens in both acidic and alkaline environments. |
| DOI | 10.1002/slct.73970 |
| Type of Journal (Indian or Foreign) | Foreign |
| Impact Factor (IF) | 2.3 |

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