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An effective TiO_2 blocking layer for hole-conductor-free perovskite solar cells based on carbon counter electrode

机译:基于碳对电极的无空穴导体钙钛矿太阳能电池有效的TiO_2阻挡层

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摘要

The hole-transporting materials and noble metal employed in normal perovskite solar cells (PSCs) limited their practical application. In this work, the high photovoltaic performance hole-conductor-free PSCs based on carbon counter electrode were fabricated in air atmosphere with high humidity condition (HR) around 55%. An efficient TiO2 blocking layers (BL-TiO2) was prepared by spin-coating the precursor solutions containing ethanol (CH3CH2OH), titanium n-butoxide (Ti(OC4H9)(4)) and diethanolamine (C4H11NO2 DEA) with different molar ratios (CH3CH2OH: Ti(OC4H9)(4): DEA = 30: 1: x) on TiCl4 per-treated FTO glass. When adding DEA in Ti precursor solution, it would revamp the cracks of blocking layer, the suitable alkaline environment provided by DEA can contribute to growing compact BL-TiO2. Electrical impedance measurements were performed to investigate the kinetic issues of charging transport performance in PSCs with different amount of DEA. The optimized PSCs exhibited a short-circuit photocurrent density of 22.71 mA/cm(2), open-circuit voltage of 954 mV, fill factor of 0.55 and power conversion efficiency (PCE) of 11.92% when DEA molar ratios x = 0.75. The PCE of optimized PSCs retained about 90% after 21 days in air with HR around 55%. The low cost and outstanding properties endow the present carbon counter electrode based PSCs with immense application potentials.
机译:普通钙钛矿太阳能电池(PSC)中使用的空穴传输材料和贵金属限制了它们的实际应用。在这项工作中,基于碳对电极的高光伏性能无孔导体PSC是在空气湿度约为55%的高空气条件下制造的。通过旋涂含有不同摩尔比(CH3CH2OH)的乙醇(CH3CH2OH),正丁醇钛(Ti(OC4H9)(4))和二乙醇胺(C4H11NO2 DEA)的前体溶液来制备有效的TiO2阻挡层(BL-TiO2) :在经过TiCl4处理的FTO玻璃上的Ti(OC4H9)(4):DEA = 30:1:x)。当在钛前驱体溶液中添加DEA时,它将改善阻挡层的裂纹,DEA提供的合适的碱性环境可有助于生长致密的BL-TiO2。进行了电阻抗测量,以研究具有不同DEA量的PSC中电荷传输性能的动力学问题。当DEA摩尔比x = 0.75时,优化的PSC的短路光电流密度为22.71 mA / cm(2),开路电压为954 mV,填充系数为0.55,功率转换效率(PCE)为11.92%。经过优化的PSC在空气中放置21天后的PCE保持约90%,HR约为55%。低成本和出色的性能使本发明的基于碳对电极的PSC具有巨大的应用潜力。

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