Marika Fiorentino, Maria Vittoria Mollo, Antonio D'Angelo, Daniele Naviglio, Ignazio Blanco, Michelina Catauro
Olive leaf extract (OLE) contains polyphenolic compounds with reported antioxidant and antimicrobial activities. In this study, OLE obtained by Naviglio extraction was incorporated into zirconia-based sol-gel hybrids at theoretical contents of 8, 25, 33, and 50 wt%. Colorimetric analysis showed that OLE acted as a natural coloring agent, producing composition-dependent changes from yellow to orange-brown tones. FT-IR spectra retained the characteristic bands of the zirconia-based matrix together with OLE-related contributions, while shifts in the O-H and Zr-O regions indicated changes in the local chemical environment after incorporation. Thermal analysis showed a progressive increase in the onset temperature of the main degradation stage, from 296.2 °C for bare ZrO2 to 320.4 °C for ZrO2/OLE50%, suggesting a stabilizing effect of OLE within the hybrid matrix. Release experiments in 95% (v/v) ethanol showed a clear dependence on OLE content. ZrO2/OLE8% released almost completely within 5-6 h, whereas ZrO2/OLE25% showed an initial burst followed by slower release, reaching 75-80% after 24 h. ZrO2/OLE33% and ZrO2/OLE50% showed slower release without a clear burst phase and released less than 30%. Agar-diffusion tests showed no enhancement of antibacterial activity against Escherichia coli or Enterococcus faecalis. These preliminary findings provide a basis for further investigation into the valorization of olive leaf extract as a natural component for the development of colored functional hybrid materials.