Calcium doped MAPbI3 with better energy state alignment in perovskite solar cells

Chaojie Lu, Jing Zhang, Dagang Hou, Xinlei Gan, Hongrui Sun, Zhaobing Zeng, Renjie Chen, Hui Tian, Qi Xiong, Ying Zhang,

Applied Physics Letters · 2018 · 44 citations · 29 references

Concepts

Abstract

The organic-inorganic perovskite material with better energy alignment in the solar cell device will have a profound impact on the solar cell performance. It is valuable to tune the energy states by element substitution and doping in perovskites. Here, we present that Ca2+ is incorporated into CH3NH3PbI3, which up-shifts the valence band maximum and the conduction band minimum, leading to a difference between the bandgap and the Fermi level in the device. Consequently, Ca2+ incorporation results in an enhancement of the photovoltage and photocurrent, achieving a summit efficiency of 18.3% under standard 1 sun (AM 1.5). This work reveals the doped perovskite to improve the solar cell performance by tuning the energy state.

References

29