High-efficiency perovskite-organic blend light-emitting diodes featuring self-assembled monolayers as hole-injecting interlayers
Murali Gedda, Despoina Gkeka, Mohamad Insan Nugraha, Alberto D., Scaccabarozzi, Emre Yengel, Jafar I. Khan, Iain Hamilton, Yuanbao Lin,, Marielle Deconinck, Yana Vaynzof, Fr\'ed\'eric Laquai, Donal D. C. Bradley, and Thomas D. Anthopoulos

TL;DR
This paper reports highly efficient green perovskite-organic blend LEDs with self-assembled monolayers as hole-injecting layers, achieving record performance and stability through microstructure control and improved hole injection.
Contribution
It introduces a novel blend of quasi-2D perovskite and organic semiconductor with SAMs, leading to significant performance enhancements in PeLEDs.
Findings
External quantum efficiency up to 18.6%
Luminance of 45,276 cd/m^2
Operational stability improvements
Abstract
The high photoluminescence efficiency, color purity, extended gamut, and solution processability make low-dimensional hybrid perovskites attractive for light-emitting diode (PeLED) applications. However, controlling the microstructure of these materials to improve the device performance remains challenging. Here, the development of highly efficient green PeLEDs based on blends of the quasi-2D (q2D) perovskite, PEA2Cs4Pb5Br16, and the wide bandgap organic semiconductor 2,7 dioctyl[1] benzothieno[3,2-b]benzothiophene (C8-BTBT) is reported. The presence of C8-BTBT enables the formation of single-crystal-like q2D PEA2Cs4Pb5Br16 domains that are uniform and highly luminescent. Combining the PEA2Cs4Pb5Br16:C8-BTBT with self-assembled monolayers (SAMs) as hole-injecting layers (HILs), yields green PeLEDs with greatly enhanced performance characteristics, including external quantum efficiency…
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Taxonomy
TopicsPerovskite Materials and Applications · Organic Light-Emitting Diodes Research · Conducting polymers and applications
