AI Article Synopsis

  • The study examines the structural and photophysical properties of 2D metal halide perovskites, specifically butylammonium lead iodide and phenethylammonium lead iodide, using ultrafast transient X-ray diffraction.
  • Following optical excitation, both compounds show a narrowing of diffraction peaks and photoluminescence linewidths, indicating structural dynamics related to changes in the lead iodide octahedra.
  • The research also reveals that the crystal structure undergoes a reassignment of its space group, which clarifies the observed lattice response and rules out the possibility of a transient phase transition.

Article Abstract

Interplay between structural and photophysical properties of metal halide perovskites is critical to their utility in optoelectronics, but there is limited understanding of lattice response upon photoexcitation. Here, 2D perovskites butylammonium lead iodide, (BA) PbI , and phenethylammonium lead iodide, (PEA) PbI , are investigated using ultrafast transient X-ray diffraction as a function of optical excitation fluence to discern structural dynamics. Both powder X-ray diffraction and time-resolved photoluminescence linewidths narrow over 1 ns following optical excitation for the fluence range studied, concurrent with slight redshifting of the optical bandgaps. These observations are attributed to transient relaxation and ordering of distorted lead iodide octahedra stimulated mainly by electron-hole pair creation. The c axis expands up to 0.37% over hundreds of picoseconds; reflections sampling the a and b axes undergo one tenth of this expansion with the same timescale. Post-photoexcitation appearance of the (110) reflection in (BA) PbI would suggest a transient phase transition, however, through new single-crystal XRD, reflections are found that violate glide plane conditions in the reported Pbca structure. The static structure space group is reassigned as P2 2 2 . With this, a nonequilibrium phase transition is ruled out. These findings offer increased understanding of remarkable lattice response in 2D perovskites upon excitation.

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Source
http://dx.doi.org/10.1002/adma.202202709DOI Listing

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