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Application of a novel microwave plasma treatment for the sintering of nickel oxide coatings for use in dye-sensitized solar cells

机译:一种新型微波等离子体处理技术在染料敏化太阳能电池用氧化镍涂层烧结中的应用

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摘要

In this study the use of microwave plasma sintering of nickel oxide (NiOx) particles for use as p-type photoelectrode coatings in dye-sensitized solar cells (DSSCs) is investigated. NiOx was chosen as the photocathode for this application due to its stability, wide band gap and p-type nature. For high light conversion efficiency DSSCs require a mesoporous structure exhibiting a high surface area. This can be achieved by sintering particles of NiOx onto a conductive substrate. In this study the use of both 2.45 GHz microwave plasma and conventional furnace sintering were compared for the sintering of the NiOx particles. Coatings 1 to 2.5 μm thick were obtained from the sintered particles (mean particle size of 50 nm) on 3 mm thick fluorine-doped tin oxide (FTO) coated glass substrates. Both the furnace and microwave plasma sintering treatments were carried out at ~ 450 °C over a 5 minute period. Dye sensitization was carried out using Erythrosin B and the UV-vis absorption spectra of the NiOx coatings were compared. A 44% increase in the level of dye adsorption was obtained for the microwave plasma sintered samples as compared to that obtained through furnace treatments. While the photovoltaic performance of the DSSC fabricated using the microwave plasma treated NiOx coatings exhibited a tenfold increase in the conversion efficiency in comparison to the furnace treated samples. This enhanced performance was associated with the difference in the mesoporous structure of the sintered NiOx coatings.
机译:在这项研究中,研究了使用氧化镍(NiOx)粒子进行微波等离子体烧结作为染料敏化太阳能电池(DSSCs)中的p型光电极涂层。由于其稳定性,宽带隙和p型性质,NiOx被选作该应用的光电阴极。为了获得高的光转换效率,DSSC需要具有高表面积的中孔结构。这可以通过将NiOx颗粒烧结到导电基板上来实现。在这项研究中,比较了使用2.45 GHz微波等离子体和传统的熔炉烧结来烧结NiOx颗粒。从3 mm厚的掺氟氧化锡(FTO)涂覆的玻璃基板上的烧结颗粒(平均粒径为50 nm)获得厚度为1至2.5μm的涂层。熔炉和微波等离子体烧结处理均在约450°C下进行了5分钟。使用赤藓红B进行染料敏化,并比较NiOx涂层的紫外可见吸收光谱。与通过炉子处理相比,微波等离子体烧结样品的染料吸附水平提高了44%。与微波处理样品相比,使用微波等离子体处理的NiOx涂层制造的DSSC的光伏性能显示出转换效率提高了十倍。这种增强的性能与烧结的NiOx涂层的介孔结构的差异有关。

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