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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Non lithographic block copolymer directed self-assembled and plasma treated self-cleaning transparent coating for photovoltaic modules and other solar energy devices
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Non lithographic block copolymer directed self-assembled and plasma treated self-cleaning transparent coating for photovoltaic modules and other solar energy devices

机译:用于光伏模块和其他太阳能器件的非平光刻嵌段共聚物定向自组装和等离子体处理的自清洁透明涂层

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摘要

Through a combination of sol-gel based self-assembly and plasma based approach we have developed highly transparent, self-ordered, superhydrophilic and photoactive TiO2 thin film coatings. TiO2 sol used for such coatings comprises a block copolymer which functions as a structure directing agent. This structure directing agent aid to formation of regular pores in the TiO2 thin film, thereby, remarkably reducing the refractive index values (similar to 1.31) and enhancing the transparency (4% antireflection gain) of the coatings. Further, such porous TiO2 coatings show an excellent ability to photo-decompose organic pollutants, due to the photocatalytic ability of such metal oxide semiconductor. Enhancement in the photocatalytic activity has been obtained by porous surface created using a block copolymer and shifting the band gap energy by incorporating nitrogen so as to utilize part of the visible region of the solar spectrum for photocatalysis. An optimum condition is achieved by varying the RF self-bias potential and time of plasma treatment. Nitrogen plasma treatment, in addition to enhancing the photocatalytic activity of TiO2 is also found to enhance the mechanical stability and hydrophilicity, without hampering the optical transmission of coatings. Such coatings are also found to exhibit superhydrophilicity with water contact angle (WCA) degrees 5 under optimized condition. Thus, the coatings developed, qualify as a suitable candidate to be applied on solar PV panel and other energy devices. Treatment with nitrogen plasma extends the photocatalytic activity towards visible region of the spectrum and also ensures the mechanical stability of the otherwise porous network.
机译:通过基于溶胶 - 凝胶的自组装和基于等离子体的方法,我们开发了高度透明,自动顺序,超硫酸化和光活性TiO2薄膜涂层。用于这种涂层的TiO2溶胶包含嵌段共聚物,其用作结构引导剂。该结构指导剂有助于在TiO 2薄膜中形成常规孔,从而显着降低折射率值(类似于1.31)并增强涂层的透明度(4%抗反射增益)。此外,由于这种金属氧化物半导体的光催化能力,这种多孔TiO 2涂层显示出光谱有机污染物的优异能力。通过使用嵌段共聚物产生的多孔表面获得光催化活性的增强,并通过结合氮气来移位带隙能量,以便利用太阳光谱的部分可见区域进行光催化。通过改变RF自偏置电位和等离子体处理的时间来实现最佳条件。还发现氮等离子体处理,除了增强TiO 2的光催化活性之外,还发现增强了机械稳定性和亲水性,而不会妨碍涂层的光学传输。还发现这种涂层具有与水接触角(WCA)的超级性激性(WCA)& Degles 5在优化条件下。因此,开发的涂层,作为适用于太阳能光伏面板和其他能量装置的合适候选者。用氮等离子体处理将光催化活性延伸朝向光谱的可见区域,并且还确保了其他多孔网络的机械稳定性。

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