4.6 Article

Dominant factors limiting the optical gain in layered two-dimensional halide perovskite thin films

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 18, Issue 21, Pages 14701-14708

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c6cp01955b

Keywords

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Funding

  1. Nanyang Technological University [M4080514, M4081293]
  2. Ministry of Education AcRF Tier 1 [RG184/14, RG101/15]
  3. Ministry of Education AcRF Tier 2 [MOE2013-T2-1-081, MOE2014-T2-1-044]
  4. NTU-A*STAR Silicon Technologies Center of Excellence Program Grant [11235100003]
  5. Singapore National Research Foundation through the Singapore-Berkeley Research Initiative for Sustainable Energy (SinBeRISE) CREATE Program
  6. Singapore National Research Foundation through the Singapore-Berkeley Research Initiative for Sustainable Energy (SinBeRISE) Competitive Research Program [NRF-CRP14-2014-03]

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Semiconductors are ubiquitous gain media for coherent light sources. Solution-processed three-dimensional (3D) halide perovskites (e.g., CH(3)NH(3)Pbl(3)) with their outstanding room temperature optical gain properties are the latest members of this family. Their two-dimensional (2D) layered perovskite counterparts with natural multiple quantum well structures exhibit strong light matter interactions and intense excitonic luminescence. However, despite such promising traits, there have been no reports on room temperature optical gain in 2D layered perovskites. Herein, we reveal the challenges towards achieving amplified spontaneous emission (ASE) in the archetypal (C6H3C2H4NH3)(2)Pb-14 (or PEPI) system. Temperature-dependent transient spectroscopy uncovers the dominant free exciton trapping and bound biexciton formation pathways that compete effectively with biexcitonic gain. Phenomenological rate equation modeling predicts a large biexciton ASE threshold of similar to 1.4 mJ cm(-2), which is beyond the damage threshold of these materials. Importantly, these findings would rationalize the difficulties in achieving optical gain in 2D perovskites and provide new insights and suggestions for overcoming these challenges.

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