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Study of Glass Formation and Crystallization Kinetics in a 2D Metal Halide Perovskite Using Ultrafast Calorimetry.

Publication ,  Journal Article
Singh, A; Kim, Y; Henry, R; Ade, H; Mitzi, DB
Published in: Journal of the American Chemical Society
August 2023

While crystalline 2D metal halide perovskites (MHPs) represent a well-celebrated semiconductor class, supporting applications in the fields of photovoltaics, emitters, and sensors, the recent discovery of glass formation in an MHP opens many new opportunities associated with reversible glass-crystalline switching, with each state offering distinct optoelectronic properties. However, the previously reported [S-(-)-1-(1-naphthyl)ethylammonium]2PbBr4 perovskite is a strong glass former with sluggish glass-crystal transformation time scales, pointing to a need for glassy MHPs with a broader range of compositions and crystallization kinetics. Herein we report glass formation for low-melting-temperature 1-MeHa2PbI4 (1-MeHa = 1-methyl-hexylammonium) using ultrafast calorimetry, thereby extending the range of MHP glass formation across a broader range of organic (fused ring to branched aliphatic) and halide (bromide to iodide) compositions. The importance of a slight loss of organic and hydrogen iodide components from the MHP in stabilizing the glassy state is elucidated. Furthermore, the underlying kinetics of glass-crystal transformation, including activation energies, crystal growth rate, Angell plot, and fragility index, is studied using a combination of kinetic, thermodynamic, and rheological modeling techniques. An inferred fast crystal growth rate of 0.21 m/s for 1-MeHa2PbI4 shows promise toward suitability in extended application spaces, for example, in metamaterials, nonvolatile memory, and optical and neuromorphic computing devices.

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Published In

Journal of the American Chemical Society

DOI

EISSN

1520-5126

ISSN

0002-7863

Publication Date

August 2023

Volume

145

Issue

33

Start / End Page

18623 / 18633

Related Subject Headings

  • General Chemistry
  • 40 Engineering
  • 34 Chemical sciences
  • 03 Chemical Sciences
 

Citation

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Singh, A., Kim, Y., Henry, R., Ade, H., & Mitzi, D. B. (2023). Study of Glass Formation and Crystallization Kinetics in a 2D Metal Halide Perovskite Using Ultrafast Calorimetry. Journal of the American Chemical Society, 145(33), 18623–18633. https://doi.org/10.1021/jacs.3c06342
Singh, Akash, Yongshin Kim, Reece Henry, Harald Ade, and David B. Mitzi. “Study of Glass Formation and Crystallization Kinetics in a 2D Metal Halide Perovskite Using Ultrafast Calorimetry.Journal of the American Chemical Society 145, no. 33 (August 2023): 18623–33. https://doi.org/10.1021/jacs.3c06342.
Singh A, Kim Y, Henry R, Ade H, Mitzi DB. Study of Glass Formation and Crystallization Kinetics in a 2D Metal Halide Perovskite Using Ultrafast Calorimetry. Journal of the American Chemical Society. 2023 Aug;145(33):18623–33.
Singh, Akash, et al. “Study of Glass Formation and Crystallization Kinetics in a 2D Metal Halide Perovskite Using Ultrafast Calorimetry.Journal of the American Chemical Society, vol. 145, no. 33, Aug. 2023, pp. 18623–33. Epmc, doi:10.1021/jacs.3c06342.
Singh A, Kim Y, Henry R, Ade H, Mitzi DB. Study of Glass Formation and Crystallization Kinetics in a 2D Metal Halide Perovskite Using Ultrafast Calorimetry. Journal of the American Chemical Society. 2023 Aug;145(33):18623–18633.
Journal cover image

Published In

Journal of the American Chemical Society

DOI

EISSN

1520-5126

ISSN

0002-7863

Publication Date

August 2023

Volume

145

Issue

33

Start / End Page

18623 / 18633

Related Subject Headings

  • General Chemistry
  • 40 Engineering
  • 34 Chemical sciences
  • 03 Chemical Sciences