首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Novel near infrared reflective pigments based on hollow glass microsphere/BiOCl1-xIx composites: Optical property and superhydrophobicity
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Novel near infrared reflective pigments based on hollow glass microsphere/BiOCl1-xIx composites: Optical property and superhydrophobicity

机译:基于中空玻璃微球/ BioCl1-XIX复合材料的新型近红外反射颜料:光学性质和超疏水性

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摘要

In this work, BiOCl1,I-x(x) coated hollow glass microsphere was synthesized as a novel near infrared reflective pigment for superhydrophobic cool roof coatings. BiOCl1-I-x(x) microflowers or microspheres were deposited on hollow glass microspheres using a simple chemical liquid deposition method. The morphologies of BiOCI1-x.I-x were found to differ drastically by varying the molar ratio of Cl to I. The color of the composite pigments changed from white to red and the band gap decreased from 3.16 eV to 1.87 eV as the increased content of I. The near infrared solar reflectance of the composite pigment was as high as 0.947. An approximately 8 C decrease in outer surface temperature was obtained for the heat box coated with the composite pigments. With the help of the micro/nano-scale surface roughness of hollow glass microsphere/BiOCl1-xIx composites, a superhydrophobic coating with a contact angle of 156.1 could be obtained. The superhydrophobic cool coating showed good antifouling property when they were fouled by the slurry solution containing montmorillonite and Rhodamine B. Moreover, the prepared superhydrophobic coatings exhibited long term stability and ultraviolet durability. Therefore, such superhydrophobic cool coatings with antifouling property is able to work for a longer time by preventing the contamination for building thermal insulation.
机译:在这项工作中,BioCl1,I-X(X)涂覆的中空玻璃微球被合成为近红外反射颜料,用于超疏水凉爽的屋顶涂层。使用简单的化学液体沉积法在中空玻璃微球上沉积BioCl1-I-X(X)微球或微球。发现Bioci1-Xi-X的形态通过改变Cl至I的摩尔比而急剧不同。复合颜料的颜色从白色变为红色,带隙从3.16eV降低至1.87eV作为增加的含量I.复合颜料的近红外太阳能反射率高达0.947。为涂有复合颜料的热箱获得大约8c的外表面温度降低。借助中空玻璃微球/ BioCl1-XIX复合材料的微/纳米级表面粗糙度,可以获得具有156.1的接触角的超疏水涂层。超疏水的冷却涂层显示出良好的防污性,当含有蒙脱石和罗丹明B的浆液溶液污染时。此外,制备的超疏水涂层表现出长期稳定性和紫外线耐久性。因此,具有防污性能的这种超疏水性冷却涂层通过防止构建隔热绝缘的污染能够在更长的时间内工作。

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