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Anti-reflection and self-cleaning meso-porous TiO_2 coatings as solar systems protective layer: Investigation of effect of porosity and roughness

机译:抗反射和自清洁中间多孔TiO_2涂层作为太阳能系统保护层:孔隙率和粗糙度的影响

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摘要

Anti-reflection and self-cleaning coatings on the glass substrate are used to improve the performance of solar systems. TiO2 are one of the most used semiconductors for this application. In this research meso-porous TiO2 coatings (that synthesized by the sol-gel process) with the various extent of porosity (using different concentrations of Pluronic F127, as pore-forming agent) have been investigated. The coating's thickness and porosity and anti-reflective properties were studied by FE-SEM and UV/VIS spectrometer (transmission spectra test), respectively. It was found that the use of F127 leads to the formation of pores smaller than 30 nm and increases the surface roughness from 1.5 (for F127 free coating) to 2.4 (for coating with 1.6 x 10(-3) M of F127). and the transmittance of waves in the range of visible spectrum for TiO2 coated glass with 1.6 x 10(-3) and 2 x 10(-3) (M) was higher than the bare glass. The etching of TiO2 coating with HF (5%) is another beneficial way to improve the anti-reflective properties. Self-cleaning properties of super-hydrophilic TiO2 coating were investigated by contact angle and fatty acid decomposition tests. The contact angle of meso-porous TiO2 coating (4.2 degrees) was less than dense coating (5.8 degrees) and by increasing the coating surface roughness, the rate of fatty acid contaminations decomposition on the surface was increased.
机译:玻璃基板上的抗反射和自清洁涂层用于改善太阳能系统的性能。 TiO2是本申请中最使用的半导体之一。在该研究中,已经研究了具有各种程度的孔隙率(使用不同浓度的Pluronic F127,作为孔形成剂)的中间多孔TiO 2涂层(用不同浓度的Pluronic F127合成。通过Fe-SEM和UV / VIS光谱仪(透射光谱测试)研究了涂层的厚度和孔隙率和抗反射性能。发现使用F127导致孔的形成小于30nm,并将1.5(对于F127游离涂层)的表面粗糙度增加至2.4(用于涂覆1.6×10(-3)m的F127)。并且在具有1.6×10(-3)和2×10(-3)(m)的TiO 2涂覆玻璃的可见光谱范围内的波浪的透射率高于裸玻璃。用HF(5%)的TiO 2涂层的蚀刻是改善抗反射性质的另一种有益的方法。通过接触角和脂肪酸分解试验研究超亲水性TiO2涂层的自清洁性能。中间多孔TiO2涂层(4.2度)的接触角小于致密涂层(5.8度),并通过增加涂层表面粗糙度,脂肪酸污染在表面上分解的速率增加。

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