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首页> 外文期刊>Solar RRL >Effective Carbon Composite Electrode for Low-Cost Perovskite Solar Cell with Inorganic CuIn_(0.75)Ga_(0.25)S_2 Hole Transport Material
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Effective Carbon Composite Electrode for Low-Cost Perovskite Solar Cell with Inorganic CuIn_(0.75)Ga_(0.25)S_2 Hole Transport Material

机译:无机CuIn_(0.75)Ga_(0.25)S_2空穴传输材料的低成本钙钛矿型太阳能电池用有效碳复合电极

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摘要

Perovskite solar cells are well known for being low cost, solution-based, and efficient solar cells; however, the high price of the conventional hole-collector electrode (Spiro-OMeTAD/Gold) and the high price and complexity of depositing gold on large scales are major barriers against commercializing them. Herein, an effective carbon composite electrode is introduced for a low-cost perovskite solar cell with CuIn_(0.75)Ga_(0.25)S_2 hole transport material to solve this problem. The carbon electrode is deposited by the doctor blade method using a paste composed of flakes of graphite, carbon black, and a kind of hydrophobic polymer (polystyrene or poly-methyl methacrylate). It is investigated how the weight ratio of carbon black to graphite and type of binder affect sheet resistance and resistivity of carbon composite layer. The effects of carbon electrode composition on the charge transport resistance at the CuIn_(0.75)Ga_(0.25)S_2/perovskite interface are investigated using impedance spectroscopy in different light intensities of white light and light with different wavelengths of 530, 660, and 740 nm. The best efficiency of 15.9% is obtained for the champion cell (fabricated outside the glovebox), which is close to the best efficiency of the reference cell with conventional Spiro-OMeTAD/Gold hole-collector that is 16.3%.
机译:钙钛矿太阳能电池以低成本,基于解决方案的高效太阳能电池而闻名。然而,常规空穴收集电极(Spiro-OMeTAD / Gold)的高价格以及大规模沉积金的高价格和复杂性是阻碍其商业化的主要障碍。在此,为了解决该问题,针对具有CuIn_(0.75)Ga_(0.25)S_2空穴传输材料的低成本钙钛矿型太阳能电池,引入了有效的碳复合电极。通过刮刀法使用由石墨薄片,炭黑和一种疏水性聚合物(聚苯乙烯或聚甲基丙烯酸甲酯)组成的糊剂沉积碳电极。研究了炭黑与石墨的重量比和粘合剂类型如何影响碳复合层的薄层电阻和电阻率。在不同的白光和不同波长的530、660和740 nm波长的光强度下,使用阻抗谱研究了碳电极组成对CuIn_(0.75)Ga_(0.25)S_2 /钙钛矿界面处的电荷输运电阻的影响。 。冠军电池(在手套箱外部制作)的最佳效率为15.9%,与传统Spiro-OMeTAD /金空穴收集器的参考电池的最佳效率接近16.3%。

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