一种环保的钛硅核壳纳米颗粒涂料,用于保护文化历史建筑的瓦片立面

ty10086 提交于 周三, 08/25/2021 - 16:05
文章英文标题
An environmentally friendly titania–silica core–shell nanoparticles coating for protection of tiled facade of cultural-historical buildings
正文
本研究的目的是合成并表征一种疏水性紫外线( UV )吸收性涂料,用于保护文化历史建筑的瓦片立面。考虑到此类应用的环境和节约问题,使用有毒材料是有限的。以有机改性硅酸盐( ormosil )和二氧化钛-二氧化硅核壳纳米粒子分别作为基体和增强相,制备了一种硅基纳米复合涂层。采用溶胶-凝胶法制备了纳米复合涂层。采用端羟基聚二甲基硅氧烷( PDMS-OH )和正硅酸乙酯( TEOS )形成ormosil基体。采用锐钛矿相二氧化钛纳米颗粒。为了控制它们的光催化活性,制备了二氧化硅-二氧化钛核壳纳米颗粒。采用浸渍提拉和简单刷涂的方法,将纳米复合涂层应用于显微镜载玻片和历史瓷砖上。采用傅里叶变换红外光谱( FT-IR )、X射线衍射( XRD )、透射电子显微镜( TEM )、水接触角和光催化活性测试对涂层进行了表征。结果表明,在不添加剧毒溶剂和催化剂的情况下,在初始溶胶中加入最大量20wt %的PDMS-OH,可得到制备的ormosil透明疏水涂层。ormosil凝胶的FT-IR谱图显示与硅胶相对应的Si-O-Si键。也表明PDMS与二氧化硅网络形成共价键。X射线衍射( XRD )分析表明,经过核壳处理后,TiO2保持了锐钛矿晶型结构。核壳处理纳米颗粒的TEM照片说明了在二氧化钛核周围形成厚度小于4   nm的连续二氧化硅壳层。瓷砖表面的水接触角测试表明,涂层后的接触角从30°增加到97°。紫外-可见分光光度法的结果证实,连续的二氧化硅层起到了光催化二氧化钛与亚甲基蓝之间的屏障作用。总体而言,获得环境友好、透明、疏水和紫外吸收的纳米复合涂层的最佳组成可以包含20wt %的PDMS-OH和约0.025wt %的二氧化硅-二氧化钛核壳纳米粒子。
文章内容(英文)
The purpose of the current research was to synthesize and characterize a hydrophobic ultraviolet (UV) absorbent coating for protection of tiled facade of cultural-historical buildings. Considering the environmental and conservational issues for such applications, using toxic materials is limited. A silicone-based nanocomposite coating was prepared in which organically modified silicates (ormosil) and titania–silica core–shell nanoparticles were used as matrix and reinforcing phase, respectively. Nanocomposite coatings were prepared by sol–gel method. Hydroxy-terminated polydimethylsiloxane (PDMS-OH) and tetraethoxysilane (TEOS) were used to form the ormosil matrix. Titania nanoparticles in anatase crystalline phase were used. To control their photocatalytic activity, silica–titania core–shell nanoparticles were prepared. Nanocomposite coatings were applied on microscope slides and historic tiles by dip-coating and simple brushing. The coatings were characterized by Fourier-transform infrared (FT-IR) spectroscopy, X-ray diffraction (XRD), transmission electron microscopy (TEM), water contact angle measurements and photocatalytic activity measurements. The results revealed that a transparent hydrophobic coating of prepared ormosils could obtain by adding a maximum amount of 20 wt% of PDMS-OH to the initial sols without addition of highly toxic solvents and catalysts. The FT-IR spectra of ormosil gels exhibited Si–O–Si bond corresponding to silica gels. It also showed that PDMS formed covalent bonds to silica networks. The XRD patterns showed that titania maintained its anatase crystalline structure after core–shell treatment. TEM images of core–shell treated nanoparticles illustrated the formation of continuous silica shell with less than 4 nm thickness around titania cores. Water contact angle measurements on tiles showed an increase in contact angle from 30° to 97° after coating. The results of UV–Vis spectrophotometry confirmed that the continuous silica layer acted as a barrier between photocatalytic titania and Methylene blue. Overall, the best composition for obtaining an environmentally friendly, transparent, hydrophobic, and UV absorbing nanocomposite coating could contain 20 wt% of PDMS-OH and about 0.025 wt% of silica–titania core–shell nanoparticles.
来源出处
Journal|[J]Results in Surfaces and InterfacesVolume 2, 2021.
DOI
https://doi.org/10.1016/J.RSURFI.2021.100004

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