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Updated: May 12, 2026

Monovalent Cation Doping of CH3NH3PbI3 for Efficient Perovskite Solar Cells
Published on: March 19, 2017
Efficient and Stable Carbon-Based Hole-Transport-Layer-Free CsPbI2Br Solar Cells by Adding Trace Amounts of Yttrium
XueYan Ma1, Hongbo Tong1,2, Wenxuan Li1
1LONGi Institute of Future Technology and School of Materials & Energy, Lanzhou University, 222 South Tianshui Road, Lanzhou, Gansu 730000, China.
Abstract:
CsPbI2Br solar cells are a kind of important inorganic perovskite photovoltaic (PV) device that can serve as the top cells in a tandem configuration or semitransparent PV devices with balanced structural stability and light absorption. However, the issues relating to their power conversion efficiency (PCE) and long-term stability are still severely impeded by uncoordinated Pb2+ and migratable I-. To effectively passivate the uncoordinated Pb2+ and meanwhile anchor the migratable I-, herein, we propose a simple strategy by adding yttrium acetate (Y(Ac)3) in the photoactive layer. A leading PCE of 15.53%, together with the notably improved stability and reduced current-voltage hysteresis, indicates the effectiveness of this additive strategy, as demonstrated in the carbon-based hole-transport-layer (HTL)-free CsPbI2Br solar cells having a higher performance-to-cost ratio than their conventional counterparts because they abandon the usage of noble metal electrodes and the expensive organic HTLs that are also detrimental to the photoactive layer.

