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Water Diffusion through a Titanium Dioxide/Poly(Carbonate Urethane) Nanocomposite for Protecting Cultural Heritage: Interactions and Viscoelastic Behavior

机译:通过二氧化钛/聚(碳酸氨基甲酸乙酯)纳米复合材料的水扩散以保护文化遗产:相互作用和粘弹性行为

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摘要

Water diffusion through a TiO2/poly (carbonate urethane) nanocomposite designed for the eco-sustainable protection of outdoor cultural heritage stonework was investigated. Water is recognized as a threat to heritage, hence the aim was to gather information on the amount of water uptake, as well as of species of water molecules absorbed within the polymer matrix. Gravimetric and vibrational spectroscopy measurements demonstrated that diffusion behavior of the nanocomposite/water system is Fickian, i.e., diffusivity is independent of concentration. The addition of only 1% of TiO2 nanoparticles strongly betters PU barrier properties and water-repellency requirement is imparted. Defensive action against penetration of water free from, and bonded through, H-bonding association arises from balance among TiO2 hydrophilicity, tortuosity effects and quality of nanoparticle dispersion and interfacial interactions. Further beneficial to antisoiling/antigraffiti action is that water-free fraction was found to be desorbed at a constant rate. In environmental conditions, under which weathering processes are most likely to occur, nanocomposite Tg values remain suitable for heritage treatments.
机译:研究了通过TiO2 / poly(碳酸氨基甲酸酯)纳米复合材料对水的扩散,该纳米复合材料旨在对户外文化遗产石料进行生态可持续性保护。水被认为是对遗产的威胁,因此目的是收集有关水吸收量以及在聚合物基质中吸收的水分子种类的信息。重量和振动光谱测量表明,纳米复合材料/水系统的扩散行为是菲克式的,即扩散率与浓度无关。仅添加1%的TiO2纳米颗粒可大大改善PU阻隔性能,并满足防水要求。不受H键结合的水渗透的防御作用是由TiO2亲水性,曲折效应,纳米颗粒分散液的质量和界面相互作用之间的平衡引起的。对于抗污/抗涂鸦作用进一步有益的是,发现无水部分以恒定的速率解吸。在最可能发生风化过程的环境条件下,纳米复合材料的Tg值仍然适合进行遗产处理。

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