Hydrophobization of limestone using fluorinated and TEOS-based polymers
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Article Details
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Katsikoglou, S., Aslanidou, D., & Karapanagiotis, I. (2024). Hydrophobization of limestone using fluorinated and TEOS-based polymers. International Symposium on the Conservation of Monuments in the Mediterranean Basin, 325–327. https://doi.org/10.12681/monubasin.8344
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- Part VII - Technologies for Damage Rehabilitation and Sustainable Preservation
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References
P.N. Manoudis, A. Tsakalof, I. Karapanagiotis, I. Zuburtikudis and C. Panayiotou, Fabrication of super-hydrophobic surfaces for enhanced stone protection, Surf. & Coat. Tech., vol. 203, pp. 1322–1328, 2009.
T. Poli, L. Toniolo and O. Chiantore, Protection Efficacy of Fluorinated Acrylic Copolymers Applied on Historical Italian Marbles, Appl. Phys. A, vol. 79, pp. 347-351, 2004.
M. Hosseini and I. Karapanagiotis I., (Eds.) Advanced Materials for the Conservation of Stone; Springer: Cham, Switzerland, 2018.
P.N. Manoudis, Z. Chughtai, V. Tsiridis, S.P. Evgenidis, P.K. Spathis, T.D. Karapantsios and I. Karapanagiotis, Tuning the Wettability of a Commercial Silane Product to Induce Superamphiphobicity for Stone Protection, Coatings vol. 13, no 700, 2023.
D. Lampakis, P.N. Manoudis, and I. Karapanagiotis, Monitoring the polymerization process of Si-based superhydrophobic coatings using Raman spectroscopy, Prog. Org. Coat., vol. 76, pp. 488–494, 2013.
V. Renda V., M.A. de Buergo, M.L. Saladino and E. Caponetti, Assessment of protection treatments for carbonatic stone using nanocomposite coatings, Prog. Org. Coat., vol. 141, no 105515, 2020.
E. Yilgör and I. Yilgör, Silicone containing copolymers: Synthesis, properties and applications, Prog. Polym. Sci., vol. 39, pp. 1165–1195, 2014.
E. Gkrava, V. Tsiridis, P. Manoudis, T. Zorba, E. Pavlidou, A. Konstantinidis, T.D. Karapantsios, P.K. Spathis and I. Karapanagiotis, A robust superhydrophobic coating of siloxane resin and hydrophobic calcium carbonate nanoparticles for limestone protection, Mater. Today Commun., vol. 38, no 108393, 2024.
K.H. Wu, C.M. Chao, T.F. Yeh and T.C. Chang, Thermal stability and corrosion resistance of polysiloxane coatings on 2024-T3 and 6061-T6 aluminum alloy, Surf. Coat. Technol., vol. 201, pp. 5782–5788, 2007.
C. Zhang, L. Qu, Y. Wang, T. Xu and C. Zhang, Thermal insulation and stability of polysiloxane foams containing hydroxylterminated polydimethylsiloxanes, RSC Adv., vol. 8, no 9901, 2018.
G. Allesandrini, M. Aglietto, V. Castelvetro, F. Ciardelli, R. Peruzzi and L. Toniolo, Comparative evaluation of fluorinated and unfluorinated acrylic copolymers as water-repellent coating materials for stone, J. Appl. Polym. Sci. vol. 76, pp. 962–977, 2000.
P. Rizzarelli, C. La Rosa and A. Torrisi, Testing a fluorinated compound as a protective material for calcarenite, J. Cult. Herit., vol. 2, pp.