Monolayer WS2 electro- and photo-luminescence enhancement by TFSI treatment

Author:

Cadore A RORCID,Rosa B L T,Paradisanos IORCID,Mignuzzi SORCID,De Fazio DORCID,Alexeev E MORCID,Dagkli A,Muench J E,Kakavelakis G,Shinde S M,Yoon DORCID,Tongay SORCID,Watanabe KORCID,Taniguchi T,Lidorikis EORCID,Goykhman IORCID,Soavi GORCID,Ferrari A CORCID

Abstract

Abstract Layered material heterostructures (LMHs) can be used to fabricate electroluminescent devices operating in the visible spectral region. A major advantage of LMH-based light emitting diodes (LEDs) is that electroluminescence (EL) emission can be tuned across that of different exciton complexes (e.g. biexcitons, trions, quintons) by controlling the charge density. However, these devices have an EL quantum efficiency as low as ∼10−4%. Here, we show that the superacid bis-(triuoromethane)sulfonimide (TFSI) treatment of monolayer WS2-LEDs boosts EL quantum efficiency by over one order of magnitude at room temperature. Non-treated devices emit light mainly from negatively charged excitons, while the emission in treated ones predominantly involves radiative recombination of neutral excitons. This paves the way to tunable and efficient LMH-based LEDs.

Funder

ERC

EU

EP

EPSRC

Publisher

IOP Publishing

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