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Updated: Aug 2, 2026

Low Pressure Vapor-assisted Solution Process for Tunable Band Gap Pinhole-free Methylammonium Lead Halide Perovskite Films
Published on: September 8, 2017
Strongly Bonded Organic Acids Passivate Perovskite Quantum Dot Surfaces to Achieve High Brightness and Stability
Zengxin Yan1, Zelong Zhang1, Rui Nie1
1School of Materials Science and Engineering, Tianjin Key Lab for Rare Earth Materials and Applications, Nankai University, Tianjin 300350, China.
Abstract:
The engineering of surficial ligands plays a crucial role in the optoelectronic performance of perovskite quantum dot light-emitting diodes (PQD-LEDs). In this work, via a ligand exchange strategy using diisooctylphosphinic acid (DOPA), which exhibits stronger bonding capacity with component Pb2+ ions, the surface ligands of FA0.15Cs0.85PbBr3 PQDs are optimized, beneficial for both radiative recombination and operational stability. The green PQD-LED (peaking at 520 nm) achieves a maximum luminance of 1.337 × 105 cd m-2, with an external excitation efficiency of 16.88%, and a long operational lifetime (T50) of 4.31 h at a high luminous of 1000 cd m-2. The restriction of Br- ion migration in PQDs, by using DOPA ligands to alter the surficial species and lattice components, results in stable emission peaks that are independent of bias voltage and operation time. This method is widely applicable for fabricating optoelectronic devices using PQDs with mixed components to improve efficiency and stability.
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