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首页> 外文期刊>Coatings >TiO2 Nanocrystal Based Coatings for the Protection of Architectural Stone: The Effect of Solvents in the Spray-Coating Application for a Self-Cleaning Surfaces
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TiO2 Nanocrystal Based Coatings for the Protection of Architectural Stone: The Effect of Solvents in the Spray-Coating Application for a Self-Cleaning Surfaces

机译:用于保护建筑石材的TiO2纳米晶体基涂料:溶剂在自清洁表面喷涂中的作用

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摘要

A colloidal route was exploited to synthesize TiO2 anisotropic nanocrystal rods in shape (TiO2 NRs) with a surface chemistry suited for their dispersibility and processability in apolar organic solvents. TiO2 NRs were dispersed in chloroform and n-heptane, respectively, and the two resulting formulations were investigated to identify the optimal conditions to achieve high-quality TiO2 NR-based coatings by the spray-coating application. In particular, the two types of TiO2 NR dispersions were first sprayed on silicon chips as a model substrate in order to preliminarily investigate the effect of the solvent and of the spraying time on the morphology and uniformity of the resulting coatings. The results of the SEM and AFM characterizations of the obtained coatings indicated n-heptane as the most suited solvent for TiO2 NR dispersion. Therefore, an n-heptane dispersion of TiO2 NRs was sprayed on a highly porous limestone—Lecce stone—very commonly used as building material in historic constructions and monuments present in Apulia Region (Italy). A comprehensive physical-chemical investigation of the TiO2 NR based treatment on the surface of the stone specimens, including measurements of colour variation, static contact angle, water transfer properties, and morphological characterization were performed. Finally, the photocatalytic properties of the coatings were assessed under solar irradiation by using Lecce stone specimens and Methyl Red as a model target compound. The obtained results demonstrated that TiO2 NRs based coatings can be successfully applied by spray-coating resulting in an effective photocatalytic and hydrophobic treatment, which holds great promise as a material for the environmental protection of architectural stone in the field of cultural heritage conservation.
机译:开发了一种胶体路线,以合成形状合适的TiO2各向异性纳米晶棒(TiO2 NRs),其表面化学性质使其适合于在非极性有机溶剂中的分散性和可加工性。 TiO2 NRs分别分散在氯仿和正庚烷中,并研究了两种所得配方,以确定通过喷涂法获得高质量TiO2 NR基涂料的最佳条件。尤其是,首先将两种类型的TiO2 NR分散体喷涂在硅片上作为模型基材,以初步研究溶剂和喷涂时间对所得涂层的形态和均匀性的影响。所得涂层的SEM和AFM表征结果表明,正庚烷是最适合TiO2 NR分散体的溶剂。因此,将TiO2 NRs的正庚烷分散体喷洒在高度多孔的石灰石-莱切石上-莱普斯石非常常用,用于普利亚大区(意大利)的历史建筑和纪念碑。对石材样品表面上基于TiO2 NR的处理进行了全面的物理化学研究,包括颜色变化,静态接触角,水转移性能和形态表征的测量。最后,通过使用莱切石标本和甲基红作为模型目标化合物,在太阳辐射下评估了涂料的光催化性能。获得的结果表明,可以通过喷涂成功地涂覆基于TiO2 NRs的涂料,从而实现有效的光催化和疏水处理,在文化遗产保护领域作为建筑石材的环境保护材料具有广阔的前景。

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