首页> 美国卫生研究院文献>Beilstein Journal of Nanotechnology >Semi-automatic spray pyrolysis deposition of thin transparent titania films as blocking layers for dye-sensitized and perovskite solar cells
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Semi-automatic spray pyrolysis deposition of thin transparent titania films as blocking layers for dye-sensitized and perovskite solar cells

机译:半自动喷雾热解沉积透明的二氧化钛薄膜作为染料敏化和钙钛矿型太阳能电池的阻挡层

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摘要

For proper function of the negative electrode of dye-sensitized and perovskite solar cells, the deposition of a nonporous blocking film is required on the surface of F-doped SnO2 (FTO) glass substrates. Such a blocking film can minimise undesirable parasitic processes, for example, the back reaction of photoinjected electrons with the oxidized form of the redox mediator or with the hole-transporting medium can be avoided. In the present work, thin, transparent, blocking TiO2 films are prepared by semi-automatic spray pyrolysis of precursors consisting of titanium diisopropoxide bis(acetylacetonate) as the main component. The variation in the layer thickness of the sprayed films is achieved by varying the number of spray cycles. The parameters investigated in this work were deposition temperature (150, 300 and 450 °C), number of spray cycles (20–200), precursor composition (with/without deliberately added acetylacetone), concentration (0.05 and 0.2 M) and subsequent post-calcination at 500 °C. The photo-electrochemical properties were evaluated in aqueous electrolyte solution under UV irradiation. The blocking properties were tested by cyclic voltammetry with a model redox probe with a simple one-electron-transfer reaction. Semi-automatic spraying resulted in the formation of transparent, homogeneous, TiO2 films, and the technique allows for easy upscaling to large electrode areas. The deposition temperature of 450 °C was necessary for the fabrication of highly photoactive TiO2 films. The blocking properties of the as-deposited TiO2 films (at 450 °C) were impaired by post-calcination at 500 °C, but this problem could be addressed by increasing the number of spray cycles. The modification of the precursor by adding acetylacetone resulted in the fabrication of TiO2 films exhibiting perfect blocking properties that were not influenced by post-calcination. These results will surely find use in the fabrication of large-scale dye-sensitized and perovskite solar cells.
机译:为了使染料敏化和钙钛矿型太阳能电池的负极正常工作,需要在掺F的SnO2(FTO)玻璃基板表面上沉积无孔阻挡膜。这种阻挡膜可以使不希望的寄生过程最小化,例如,可以避免光注入电子与氧化形式的氧化还原介体或与空穴传输介质的逆反应。在本工作中,通过半自动喷雾热解由二异丙氧基钛双(乙酰丙酮酸)钛为主要成分的前驱体,制备出透明,透明,封闭的TiO2薄膜。喷涂膜的层厚度的变化是通过改变喷涂次数来实现的。在这项工作中研究的参数是沉积温度(150、300和450°C),喷涂周期数(20–200),前体组成(有/无故意添加乙酰丙酮),浓度(0.05和0.2 M)以及后续的-在500℃下煅烧。在紫外线照射下在电解质水溶液中评价光电化学性质。用具有简单的单电子转移反应的模型氧化还原探针通过循环伏安法测试阻隔性能。半自动喷涂导致形成透明,均匀的TiO2膜,该技术可轻松放大至较大的电极面积。 450°C的沉积温度是制造高光敏性TiO2膜所必需的。在500°C下进行后煅烧会损害刚沉积的TiO2膜(在450°C下)的粘连性能,但可以通过增加喷涂次数来解决此问题。通过加入乙酰丙酮对前体进行的改性导致制备出具有完美的粘合性能的TiO2薄膜,该薄膜不受后煅烧的影响。这些结果必将在大规模染料敏化和钙钛矿太阳能电池的制造中找到应用。

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