4.8 Article

Reflectivity Effects on Pump-Probe Spectra of Lead Halide Perovskites: Comparing Thin Films versus Nanocrystals

Journal

ACS NANO
Volume 12, Issue 6, Pages 5719-5725

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.8b01570

Keywords

lead halide perovskite; perovskite nanocrystals; absorption and reflectivity of perovskites; photoinduced refractive index change; ultrafast spectroscopy

Funding

  1. US-Israel Binational Science Foundation
  2. Israel Science Foundation
  3. Lady Davis Fellowship Trust
  4. Raymond and Janine Bollag Post-Doctoral Fellowship Fund
  5. Israel Ministry of Science

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Due to the sizable refractive index of lead halide perovskites, reflectivity off their interface with air exceeds 15%. This has prompted a number of investigations into the prominence of photoreflective contributions to pump-probe data in these materials, with conflicting results. Here we report experiments aimed at assessing this by comparing transient transmission from lead halide perovskite films and weakly quantum confined nanocrystals of cesium lead iodide (CsPbI3) perovskite. By analyzing how complex refractive index changes impact the two experiments, results demonstrate that changes in absorption and not reflection dominate transient transmission measurements in thin films of these materials. None of the characteristic spectral signatures reported in such experiments are exclusively due to or even strongly affected by changes in sample reflectivity. This finding is upheld by another experiment where a methyl ammonium lead iodide (MAPbI(3)) perovskite film was formed on high-index flint glass and probed after pump irradiation from either face of the sample. We conclude that interpretations of ultrafast pump-probe experiments on thin perovskite films in terms of photoinduced changes in absorption alone are qualitatively sound, requiring relatively minor adjustments to factor in photoreflective effects.

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