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Origin and elimination of photocurrent hysteresis by fullerene passivation in CH3NH3PbI3 planar heterojunction solar cells

机译:CH3NH3PbI3平面异质结太阳能电池中富勒烯钝化引起的光电流滞后的产生和消除

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The large photocurrent hysteresis observed in many organometal trihalide perovskite solar cells has become a major hindrance impairing the ultimate performance and stability of these devices, while its origin was unknown. Here we demonstrate the trap states on the surface and grain boundaries of the perovskite materials to be the origin of photocurrent hysteresis and that the fullerene layers deposited on perovskites can effectively passivate these charge trap states and eliminate the notorious photocurrent hysteresis. Fullerenes deposited on the top of the perovskites reduce the trap density by two orders of magnitude and double the power conversion efficiency of CH3NH3PbI3 solar cells. The elucidation of the origin of photocurrent hysteresis and its elimination by trap passivation in perovskite solar cells provides important directions for future enhancements to device efficiency.
机译:在许多有机金属三卤化物钙钛矿太阳能电池中观察到大的光电流滞后现象已成为损害这些设备最终性能和稳定性的主要障碍,尽管其起源尚不清楚。在这里,我们证明了钙钛矿材料的表面和晶界上的陷阱态是光电流滞后的起因,并且沉积在钙钛矿上的富勒烯层可以有效地钝化这些电荷陷阱态并消除臭名昭著的光电流滞后。沉积在钙钛矿顶部的富勒烯使陷阱密度降低了两个数量级,并使CH3NH3PbI3太阳能电池的功率转换效率提高了一倍。钙钛矿型太阳能电池中光电流滞后现象的产生及其陷阱钝化的消除为将来提高器件效率提供了重要的方向。

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