Brightening of dark excitons in 2D perovskites.

Sci Adv

Laboratoire National des Champs Magnétiques Intenses, EMFL, CNRS UPR 3228, University Grenoble Alpes, University Toulouse, University Toulouse 3, INSA-T, Grenoble and Toulouse, France.

Published: November 2021

AI Article Synopsis

  • Optically inactive dark exciton states are crucial in semiconductor light emission as they provide a nonradiative recombination pathway.
  • Research on the exciton fine structure of two-dimensional perovskites (PEA)SnI, (PEA)PbI, and (PEA)PbBr shows that applying an in-plane magnetic field can mix these dark states with bright states, enhancing their visibility.
  • The observed hot photoluminescence suggests a non-Boltzmann distribution of exciton populations due to weak coupling between excitons and acoustic phonons, leading to strong emission despite significant bright-dark exciton splitting.

Article Abstract

Optically inactive dark exciton states play an important role in light emission processes in semiconductors because they provide an efficient nonradiative recombination channel. Understanding the exciton fine structure in materials with potential applications in light-emitting devices is therefore critical. Here, we investigate the exciton fine structure in the family of two-dimensional (2D) perovskites (PEA)SnI, (PEA)PbI, and (PEA)PbBr. In-plane magnetic field mixes the bright and dark exciton states, brightening the otherwise optically inactive dark exciton. The bright-dark splitting increases with increasing exciton binding energy. Hot photoluminescence is observed, indicative of a non-Boltzmann distribution of the bright-dark exciton populations. We attribute this to the phonon bottleneck, which results from the weak exciton–acoustic phonon coupling in soft 2D perovskites. Hot photoluminescence is responsible for the strong emission observed in these materials, despite the substantial bright-dark exciton splitting.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8580304PMC
http://dx.doi.org/10.1126/sciadv.abk0904DOI Listing

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