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首页> 外文期刊>Journal of Colloid and Interface Science >Solution-processed p-type nanocrystalline CoO films for inverted mixed perovskite solar cells
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Solution-processed p-type nanocrystalline CoO films for inverted mixed perovskite solar cells

机译:用于倒置混合钙钛矿太阳能电池的溶液加工的P型纳米晶体CoO膜

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Inorganic p-type materials show great potential as the hole transport layer in perovskite solar cells with the merits of low costs and enhanced chemical stability. As a p-type material, cobalt oxide (CoO) has received so far not that level of attention despite its high hole mobility. Herein, solution-processed p-type CoO nanocrystalline films are developed for inverted mixed perovskite solar cells. The ultrafine CoO nanocrystals are synthesized via an oil phase method, which are subsequently treated by a ligand exchange process using pyridine solvent to remove the long alkyl chains covering the nanocrystals. From this homogeneous colloidal solution CoO films are obtained, which exhibit a smooth and pinhole free surface morphology with high transparency and good conductivity. The ultraviolet photoelectron spectrum also indicates that the energy levels of the CoO film match well with the mixed perovskite Cs-0(.05)(FA(0)(.)(83)MA(0)(.17))(0.95)(I0.83Br0.17)(3). Inverted solar cells based on crystalline Co0 films with ligand exchange show a reasonable energy conversion efficiency, whereas devices based on CoO films without ligand exchange suffer from a strong S-shape JV-characteristic. Thus, the crystalline CoO films are foreseen to pave a new way of inorganic hole transport materials in the fields of perovskite solar cells. (C) 2020 Elsevier Inc. All rights reserved.
机译:无机P型材料显示出普罗斯基特太阳能电池中的空穴传输层的潜力,具有低成本的优点和增强的化学稳定性。作为p型材料,氧化钴(COO)已经收到到目前为止,尽管其高空穴迁移率,但尽管其高度的关注程度。在此,开发溶液处理的p型CoO纳米晶体用于倒置的混合钙钛矿太阳能电池。通过油相法合成超细CoO纳米晶体,随后通过使用吡啶溶剂的配体交换方法处理,以除去覆盖纳米晶体的长烷基链。从该均匀的胶体溶液中获得CoO膜,其表现出具有高透明度和良好导电性的光滑和针孔的无表面形态。紫外线光电子光谱还表明,COO膜的能量水平与混合钙钛矿CS-0(0.05)(FA(0)(83)mA(0)(0))(0.95)相匹配(i0.83br0.17)(3)。基于具有配体交换的晶体COO膜的倒置太阳能电池显示出合理的能量转换效率,而基于没有配体交换的基于CoO膜的装置患有强的S形JV特征。因此,预先预见结晶CoO膜以在钙钛矿太阳能电池领域中铺平无机空穴传输材料的新方式。 (c)2020 Elsevier Inc.保留所有权利。

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