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Long K-Doped Titania and Titanate Nanowires on Ti Foil and Fluorine-Doped Tin Oxide/Quartz Substrates for Solar-Cell Applications

机译:钛箔和氟掺杂的氧化锡/石英衬底上的长K掺杂二氧化钛和钛酸酯纳米线,用于太阳能电池应用

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摘要

Potassium-doped titania and titanate nanowires are fabricated by moisture-assisted direct oxidation of titanium. The influence of the fabrication conditions on nanowire structure and morphology is investigated. It is shown that the presence of potassium is essential for nanowire formation, while the nanowire structure and morphology are strongly dependent on the fabrication temperature. The longest nanowires (ca. 10 μm) are obtained at 650℃. At this substrate temperature, nanowires could be produced over a large substrate area both by oxidation of the Ti foil as well as by depositing a Ti film on the substrate (quartz or fluorine-doped tin oxide (FTO)/quartz). Photovoltaic cells based on these nanowires are fabricated. The cell performance is dependent on the nanowire fabrication temperature and the substrate used, as well as on the annealing environment. Short-circuit current densities of I_(sc) = 3.05 mA cm~(-2) and I_(sc) = 4.97 mA cm~(-2) could be obtained for Ti foil and FTO/quartz substrates, respectively, while the corresponding power-conversion efficiencies are η = 0.93% and η = 1.88% (under AM 1.5 illumination, 100 mW cm~(-2); AM: air mass).
机译:钾掺杂的二氧化钛和钛酸盐纳米线是通过湿气辅助的钛直接氧化制备的。研究了制造条件对纳米线结构和形态的影响。结果表明,钾的存在对于纳米线的形成是必不可少的,而纳米线的结构和形态在很大程度上取决于制造温度。在650℃下获得最长的纳米线(约10μm)。在此基板温度下,可以通过氧化Ti箔以及在基板上沉积Ti膜(石英或掺氟的氧化锡(FTO)/石英)来在较大的基板区域上产生纳米线。制造了基于这些纳米线的光伏电池。电池性能取决于纳米线制造温度和所使用的基材以及退火环境。 Ti箔和FTO /石英基板的短路电流密度分别为I_(sc)= 3.05 mA cm〜(-2)和I_(sc)= 4.97 mA cm〜(-2),而相应的功率转换效率为η= 0.93%和η= 1.88%(在AM 1.5照明下,100 mW cm〜(-2); AM:空气质量)。

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