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首页> 外文期刊>ACS applied materials & interfaces >Interfacial Investigation on Printable Carbon-Based Mesoscopic Perovskite Solar Cells with NiOx/C Back Electrode
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Interfacial Investigation on Printable Carbon-Based Mesoscopic Perovskite Solar Cells with NiOx/C Back Electrode

机译:用NiOx / C背电极的可印刷碳基脑镜钙钛矿太阳能电池的界面调查

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摘要

Solar cells with high efficiency, low cost, and high stability are the target for the new generation of solar cells. A fully printable perovskite (CH3NH3PbI3) solar cell (PSC) with device architecture FTO/TiO2/Al2O3/NiOx/C is fabricated in the current research as a low-cost and relatively stable structure and is investigated to determine how different fabrication factors such as the thickness of the insulating spacer layer (Al2O3) or treatments such as heat and UV-O-3 treatments can affect the interfacial properties of this multilayer mesoporous structure. X-ray photoelectron spectra (XPS) show that UV-O-3 treatment increases the Ni3+ (Ni2O3) phase on the surface of the black nickel oxide layer leading to better charge extraction and increasing open-circuit voltage (V-OC) up to 0.945 V. We observe improved CH3NH3PbI3 formation inside the mesoporous layers by the PbI2 penetration at a higher temperature. Impedance spectral together with current-voltage measurements show the effect of thickness for the insulator layer in the internal and interfacial resistances and photovoltaic characteristics of the cell. The best performance of the carbon-based PSC attains power conversion efficiency of 12.1% with the thickness of the Al2O3 layer at 450 nm.
机译:具有高效率,低成本和高稳定性的太阳能电池是新一代太阳能电池的目标。具有设备架构FTO / TiO2 / Al2O3 / NiOx / C的可打印的钙钛矿(CH3NH3PBI3)太阳能电池(PSC)在当前的研究中制造了低成本和相对稳定的结构,并研究以确定如何不同的制造因素如绝缘间隔层(Al 2 O 3)或处理如热和UV-O-3处理的厚度可以影响该多层介孔结构的界面性质。 X射线光电子体光谱(XPS)表明UV-O-3处理增加了黑色镍氧化物层表面上的Ni3 +(Ni2O3)相位,从而更好地提取和增加开路电压(V-OC) 0.945 V.通过PBI2渗透在更高温度下,观察在中孔层内部的改进的CH3NH3PBI3形成。阻抗光谱与电流 - 电压测量一起显示绝缘层在内部和界面电阻和电池的光伏特性中的厚度的效果。碳基PSC的最佳性能达到12.1%的电力转换效率,厚度为450nm。

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