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January 18, 2026Polymers0 citationsOpen Access

Hydrophobic Surface Treatment for the Protection of Carparo Stone

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MPMarianna PotenzaEVEdoardo VerzaFSFederica Scigliuzzo

Key Points

  • The research aims to assess the effectiveness of a hydrophobic coating on Carparo stone to improve its durability and resistance to damage.
  • Applied a hydrophobic coating based on TEOS/PDMS after a PMMA/ZrO2/SiO2 pretreatment.
  • Conducted micro-tomography analyses to evaluate coating uniformity.
  • Utilized scanning electron microscopy for surface inspection.
  • Performed capillary water absorption tests and contact angle measurements.
  • Assessed durability through artificial aging with rain and UV cycles.
  • Coated stones showed reduced capillary water absorption and established hydrophobicity with contact angles > 140°.
  • Surface pretreatments resulted in a homogeneous coating that enhances effectiveness.
  • Colorimetric tests indicated the esthetic acceptability of the coating.
  • The protective coating remained effective without leaching after multiple aging cycles.

Abstract

The effectiveness of a hydrophobic coating based on TEOS/PDMS in protecting Carparo stone, a biocalcarenite characterized by high porosity and poor resistance to atmospheric agents and erosion, was evaluated. The hydrophobic treatment was applied over a pretreatment based on PMMA/ZrO2/SiO2 to promote a uniform distribution on the surface. Micro-tomography analyses demonstrate that pretreatment forms a homogeneous coating on the surface. Scanning electron microscopy investigation shows that the hydrophobic treatment based on TEOS/PDMS spreads across the entire surface. The coating is effective in reducing capillary water absorption, and the coated stones exhibit hydrophobicity, achieving contact angles > 140°. The coating has proven esthetically acceptable based on colorimetric tests. The durability of the treatments was evaluated through artificial aging consisting of rain cycles alternating with UV irradiation cycles. The contact angle tests carried out at the end of each cycle demonstrate that the protective coating is not leached and is still very effective. The new sustainable hydrophobic treatment can be successfully proposed for the protection of porous stones.

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Cite This Study

Potenza et al. (2026) studied this question.

synapsesocial.com/papers/696c7835eb60fb80d13966e1https://doi.org/10.3390/polym18020237
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