Real-Time Structural Dynamics at the 3D/2D Perovskite Interface in CsPbBr/PEAPbBr Nano-heterostructures.

Nano Lett

Department of Materials Science and Engineering, Institute of Science Tokyo, Ookayama 2-12-1, Meguro-ku, Tokyo 152-8552, Japan.

Published: December 2024

AI Article Synopsis

  • Research on 3D and 2D perovskite hybrid systems highlights their great potential in optoelectronic applications, but the physics of their interfaces is not well understood.
  • Using fluorescence microspectroscopy, the study investigates the photoluminescence properties of CsPbBr/PEAPbBr nano-heterostructures, revealing new quasi-2D structural phases that form at the 3D/2D interface.
  • The research shows that these phases can restructure under light excitation, enhancing energy transfer between the 2D and 3D materials, which is vital for advancing optoelectronic devices.

Article Abstract

Three-dimensional (3D) and two-dimensional (2D) perovskite hybrid systems, known for their exceptional optoelectronic properties and stability, are revolutionizing optoelectronic materials research. However, fundamental physics of the 3D/2D interfaces and their dynamics remain poorly understood. We use fluorescence microspectroscopy to study the photoluminescence (PL) properties of 3D/2D nano-heterostructures of CsPbBr/PEAPbBr formed by postgrowth self-assembly. The in situ PL spectra uncover the presence of new structural phases, quasi-2D PEACsPbBr layers of varying , at the 3D/2D interface and demonstrate their reversible restructuring under light excitation at room temperature. The restructuring is a result of layer-by-layer cation diffusion at the epitaxial interfaces, manifested as reversible spectral shifts occurring on a time scale of seconds. Such dynamics ultimately leads to optimized distribution of the quasi-2D phases in the system for efficient energy transfer from the 2D to the 3D phases. Our findings provide new insights into controlling energy flow in 3D/2D perovskites for next-generation optoelectronic devices.

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Source
http://dx.doi.org/10.1021/acs.nanolett.4c05021DOI Listing

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