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Structural origins of broadband emission from layered Pb–Br hybrid perovskites

Chemical Science · 2017 · Vol. 8(6) · pp. 4497–4504
Matthew D. SmithAdam JaffeEmma R. DohnerAaron M. LindenbergHemamala I. Karunadasa

Abstract

Through structural and optical studies of a series of two-dimensional hybrid perovskites, we show that broadband emission upon near-ultraviolet excitation is common to (001) lead-bromide perovskites. Importantly, we find that the relative intensity of the broad emission correlates with increasing out-of-plane distortion of the Pb-(μ-Br)-Pb angle in the inorganic sheets. Temperature- and power-dependent photoluminescence data obtained on a representative (001) perovskite support an intrinsic origin to the broad emission from the bulk material, where photogenerated carriers cause excited-state lattice distortions mediated through electron-lattice coupling. In contrast, most inorganic phosphors contain extrinsic emissive dopants or emissive surface sites. The design rules established here could allow us to systematically optimize white-light emission from layered hybrid perovskites by fine-tuning the bulk crystal structure.

Perovskite Materials and ApplicationsLuminescence Properties of Advanced MaterialsOptical properties and cooling technologies in crystalline materialsBroadbandHalidePerovskite (structure)Materials scienceOptoelectronicsTelecommunicationsComputer scienceChemistryInorganic chemistryCrystallography

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Alfred P. Sloan Foundation
  • Stanford University
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542
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