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Superhydrophobic coating of silica with photoluminescence properties synthesized from rice husk ash

机译:二氧化硅的超疏水涂层,具有从稻壳灰稻米合成的光致发光性能

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Water penetration into concrete can cause the degradation of concrete strength, leading into structure failure. Superhydrophobic coatings on concrete received tremendous attention in the recent years as these coatings repel water like lotus leaves. In this work, rice husk ash (RHA) was used to prepare the superhydrophobic coating. Rice husk was calcined at 550 degrees C and 650 degrees C to form silica particles with a small amount of carbon residue. RHA 550 sample showed slightly higher photoluminescence (PL) intensity than RHA 660 sample as shown in fluorescent images and PL spectra. Such difference could be related to the variation of carbon content measured using scanning electron microscope-energy-dispersive X-ray spectroscopy. The carbon residue in nano size was detected in transmission electron microscope images. RHA with PL properties was further mechanochemically modified using 1H,1H,2H,2H-perfluorodecyltriethoxysilane (HFDS) or stearic acid in ethanol. However, PL properties of RHA 550 was slightly reduced due the successful grafting of hydrophobic groups on silica particles. The modified RHA in ethanol was later spray coated on a layer of commercial adhesive to form superhyrophobic coatings on glass slides and concrete. The superhydrophobic coating on concrete with the water contact angle as high as 157.7 degrees was recorded.
机译:水渗透到混凝土中会导致混凝土强度的降解,导致结构故障。在近年来,混凝土的超疏水涂料在近年来,随着这些涂料摧毁了莲花叶子的水,收到了巨大的关注。在这项工作中,使用稻壳灰(rha)制备超疏水涂层。稻壳在550℃和650℃下煅烧,形成具有少量碳残余物的二氧化硅颗粒。 RHA 550样品显示比荧光图像和PL光谱所示的RHA 660样品略高于RHA 660样品的光致发光(PL)强度。这种差异可能与使用扫描电子显微镜 - 能量分散X射线光谱测量的碳含量的变化有关。在透射电子显微镜图像中检测纳米尺寸的碳残留物。在乙醇中使用1H,1H,2H,2H-全氟二乙烯基氧基硅烷(HFD)或硬脂酸进一步机械化学改性RHA。然而,由于二氧化硅颗粒上的疏水基团成功接枝,RHA 550的PL性能略微降低。乙醇中的改性的RHA后来喷涂在商业粘合剂层上,以在玻璃滑块和混凝土上形成超脑涂层。记录了具有高达157.7度的水接触角的混凝土上的超疏水涂层。

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