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Planar perovskite FA_xMA_(1-x)PbI_3 solar cell by two-step deposition method in air ambient

机译:平面钙钛矿FA_xMA_(1-x)PbI_3太阳能电池在空气环境中的两步沉积法

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摘要

Perovskite material presents prospective application potential in the third generation solar cell for their broad spectral absorption, small exciton binding energy and long exciton diffusion length. In this paper, low temperature and stable mixed-cation perovskite FA(x)MA(1-x)PbI(3) solar cells fabrication method in air ambient was reported. The inverted planar ITO/PEDOT:PSS/FA(x)MA(1-x)PbI(3)/PCBM/Ag structure was fabricated in air ambient, which shows better performance than either FAPbI(3) or MAPbI(3) devices, and FA(0.4)MA(0.6)PbI(3) demonstrates the highest PCE of 9.7% among the FA(x)MA(1-x)PbI(3) solar cell devices. In order to decrease the potential barrier between the PCBM and Ag electrode, a layer of Bphen was inserted between PCBM and Ag electrode, the PCE of ITO/PEDOT:PSS/FA(x)MA(1-x)PbI(3)/PCBM/Bphen/Ag perovskite solar cell was increased to 10.86%. We simulated and calculated the absorption and band energy of perovskite materials to verify the accuracy of experimental results. Our result provides a progress towards fabricating perovskite solar cells in the air ambient.
机译:钙钛矿材料因其广泛的光谱吸收,小的激子结合能和长的激子扩散长度而在第三代太阳能电池中具有潜在的应用潜力。本文报道了在空气中低温稳定的混合阳离子钙钛矿FA(x)MA(1-x)PbI(3)太阳能电池的制备方法。倒置的平面ITO / PEDOT:PSS / FA(x)MA(1-x)PbI(3)/ PCBM / Ag结构是在空气环境中制造的,其性能优于FAPbI(3)或MAPbI(3)器件,以及FA(0.4)MA(0.6)PbI(3)证明在FA(x)MA(1-x)PbI(3)太阳能电池设备中,PCE最高,为9.7%。为了减少PCBM和Ag电极之间的势垒,在PCBM和Ag电极之间插入了Bphen层,ITO / PEDOT:PSS / FA(x)MA(1-x)PbI(3)/ PCBM / Bphen / Ag钙钛矿太阳能电池增加到10.86%。我们模拟并计算了钙钛矿材料的吸收和能带,以验证实验结果的准确性。我们的结果为在空气环境中制造钙钛矿太阳能电池提供了进展。

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