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Ligand-Free Synthesis of Aluminum-Doped Zinc Oxide Nanocrystals and their Use as Optical Spacers in Color-Tuned Highly Efficient Organic Solar Cells

机译:铝掺杂氧化锌纳米晶体的无配体合成及其在彩色高效有机太阳能电池中用作光学间隔物的用途

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摘要

The color of polymer solar cells using an opaque electrode is given by the reflected light, which depends on the composition and thickness of each layer of the device. Metal-oxide-based optical spacers are intensively studied in polymer solar cells aiming to optimize the light absorption. However, the low conductivity of materials such as ZnO and TiO2 limits the thickness of such optical spacers to tenths of nanometers. A novel synthesis route of cluster-free Al-doped ZnO (AZO) nanocrystals (NCs) is presented for solution processing of highly conductive layers without the need of temperature annealing, including thick optical spacers on top of polymer blends. The processing of 80 nm thick optical spacers based on AZO nanocrystal solutions on top of 200 nm thick polymer blend layer is demonstrated leading to improved photocurrent density of 17% compared to solar cells using standard active layers of 90 nm in combination with thin ZnO-based optical spacers. These AZO NCs also open new opportunities for the processing of high-efficiency color tuned solar cells. For the first time, it is shown that applying solution-processed thick optical spacer with polymer blends of different thicknesses can process solar cells of similar efficiency over 7% but of different colors.
机译:使用不透明电极的聚合物太阳能电池的颜色由反射光决定,该反射光取决于设备每一层的组成和厚度。基于金属氧化物的光学间隔物在聚合物太阳能电池中进行了深入研究,旨在优化光吸收。然而,诸如ZnO和TiO 2的材料的低电导率将这种光学间隔物的厚度限制为十分之一纳米。提出了一种新的无团簇掺杂铝的ZnO(AZO)纳米晶体(NCs)的合成路线,用于高导电层的固溶处理,而无需进行温度退火,包括在聚合物共混物顶部使用厚的光学间隔物。已证明在200 nm厚的聚合物共混层顶部加工基于AZO纳米晶体溶液的80 nm厚的光学间隔物,与使用90 nm的标准有源层结合薄ZnO基的太阳能电池相比,可将光电流密度提高17%光学垫片。这些AZO NC还为高效的彩色调谐太阳能电池的加工提供了新的机会。首次表明,将溶液处理的厚光学垫片与不同厚度的聚合物共混物一起使用,可以处理效率超过7%但颜色不同的太阳能电池。

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