Low‐Dimensional Phase Regulation to Restrain Non‐Radiative Recombination for Sky‐Blue Perovskite LEDs with EQE Exceeding 15%

B Wang, YH Zhou, S Yuan, YH Lou… - Angewandte …, 2023 - Wiley Online Library
B Wang, YH Zhou, S Yuan, YH Lou, KL Wang, Y Xia, CH Chen, J Chen, YR Shi, ZK Wang…
Angewandte Chemie, 2023Wiley Online Library
Achieving efficient blue electroluminescence (EL) remains the fundamental challenge that
impedes perovskite light‐emitting diodes (PeLEDs) towards commercial applications. The
bottleneck accounting for the inefficient blue PeLEDs is broadly attributed to the poor‐
emissive blue perovskite emitters based on either mixed halide engineering or reduced‐
dimensional strategy. Herein, we report the high‐performing sky‐blue PeLEDs (490 nm)
with the maximum EQE exceeding 15% by incorporating a molecular modifier, namely 4, 4 …
Abstract
Achieving efficient blue electroluminescence (EL) remains the fundamental challenge that impedes perovskite light‐emitting diodes (PeLEDs) towards commercial applications. The bottleneck accounting for the inefficient blue PeLEDs is broadly attributed to the poor‐emissive blue perovskite emitters based on either mixed halide engineering or reduced‐dimensional strategy. Herein, we report the high‐performing sky‐blue PeLEDs (490 nm) with the maximum EQE exceeding 15 % by incorporating a molecular modifier, namely 4,4′‐Difluorophenone, for significantly suppressing the non‐radiative recombination and tuning of the low‐dimensional phase distribution of quasi‐2D blue perovskites, which represents a remarkable paradigm for developing the new generation of blue lighting sources.
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