Laser deposition for the controlled co-deposition of organolead halide perovskite

T. Miyadera, T. Sugita, H. Tampo, K. Matsubara, M. Chikamatsu
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Abstract

A laser deposition system for the co-evaporation of organolead halide perovskite was developed. We successfully demonstrated that the difficulty in deposition control of CH3NH3I (MAI) was overcome by laser deposition, where the evaporation rate was finely adjusted by tuning the duty ratio of squarely modulated infrared laser. Deposition rate was stabilized for several-hour co-deposition period. The laser deposition method enabled the stoichiometric control of MAI and PbI2 with sufficient reproducibility. Planar type perovskite solar cells were constructed with the use of p-type and n-type organic semiconductor as buffer layers and the efficiency of 16.0 % with reduced hysteresis was achieved.
激光沉积技术在有机卤化铅钙钛矿控制共沉积中的应用
研制了一种用于卤化有机铅钙钛矿共蒸发的激光沉积系统。我们成功地证明了激光沉积可以克服CH3NH3I (MAI)沉积控制的困难,激光沉积可以通过调节正交调制红外激光的占空比来精细地调节蒸发速率。在几个小时的共沉积期间,沉积速率稳定。激光沉积方法使MAI和PbI2的化学计量控制具有足够的重现性。采用p型和n型有机半导体作为缓冲层,构建了平面型钙钛矿太阳能电池,其效率为16.0%,且迟滞率降低。
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