4.8 Article

Intrinsic White-Light Emission from Layered Hybrid Perovskites

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 136, Issue 38, Pages 13154-13157

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ja507086b

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Funding

  1. Stanford Undergraduate Advising and Research
  2. Satre Family through Stanford Interdisciplinary Graduate Fellowship
  3. Precourt Institute for Energy

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We report on the second family of layered perovskite white-light emitters with improved photoluminescence quantum efficiencies (PLQEs). Upon near-ultraviolet excitation, two new Pb-Cl and Pb-Br perovskites emit broadband cold and warm white light, respectively, with high color rendition. Emission from large, single crystals indicates an origin from the bulk material and not surface defect sites. The Pb-Br perovskite has a PLQE of 9%, which is undiminished after 3 months of continuous irradiation. Our mechanistic studies indicate that the emission has contributions from strong electron-phonon coupling in a deformable lattice and from a distribution of intrinsic trap states. These hybrids provide a tunable platform for combining the facile processability of organic materials with the structural definition of crystalline, inorganic solids.

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