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Chiral Cation Doping for Modulating Structural Symmetry of 2D Perovskites.

Publication ,  Journal Article
Xie, Y; Morgenstein, J; Bobay, BG; Song, R; Caturello, NAMS; Sercel, PC; Blum, V; Mitzi, DB
Published in: Journal of the American Chemical Society
August 2023

Cation mixing in two-dimensional (2D) hybrid organic-inorganic perovskite (HOIP) structures represents an important degree of freedom for modifying organic templating effects and tailoring inorganic structures. However, the limited number of known cation-mixed 2D HOIP systems generally employ a 1:1 cation ratio for stabilizing the 2D perovskite structure. Here, we demonstrate a chiral-chiral mixed-cation system wherein a controlled small amount (<10%) of chiral cation S-2-MeBA (S-2-MeBA = (S)-(-)-2-methylbutylammonium) can be doped into (S-BrMBA)2PbI4 (S-BrMBA = (S)-(-)-4-bromo-α-methylbenzylammonium), modulating the structural symmetry from a higher symmetry (C2) to the lowest symmetry state (P1). This structural change occurs when the concentration of S-2-MeBA, measured by solution nuclear magnetic resonance, exceeds a critical level─specifically, for 1.4 ± 0.6%, the structure remains as C2, whereas 3.9 ± 1.4% substitution induces the structure change to P1 (this structure is stable to ∼7% substitution). Atomic occupancy analysis suggests that one specific S-BrMBA cation site is preferentially substituted by S-2-MeBA in the unit cell. Density functional theory calculations indicate that the spin splitting along different k-paths can be modulated by cation doping. A true circular dichroism band at the exciton energy of the 3.9% doping phase shows polarity inversion and a ∼45 meV blue shift of the Cotton-effect-type line-shape relative to (S-BrMBA)2PbI4. A trend toward suppressed melting temperature with higher doping concentration is also noted. The chiral cation doping system and the associated doping-concentration-induced structural transition provide a material design strategy for modulating and enhancing those emergent properties that are sensitive to different types of symmetry breaking.

Duke Scholars

Published In

Journal of the American Chemical Society

DOI

EISSN

1520-5126

ISSN

0002-7863

Publication Date

August 2023

Volume

145

Issue

32

Start / End Page

17831 / 17844

Related Subject Headings

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

Citation

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Xie, Y., Morgenstein, J., Bobay, B. G., Song, R., Caturello, N. A. M. S., Sercel, P. C., … Mitzi, D. B. (2023). Chiral Cation Doping for Modulating Structural Symmetry of 2D Perovskites. Journal of the American Chemical Society, 145(32), 17831–17844. https://doi.org/10.1021/jacs.3c04832
Xie, Yi, Jack Morgenstein, Benjamin G. Bobay, Ruyi Song, Naidel A. M. S. Caturello, Peter C. Sercel, Volker Blum, and David B. Mitzi. “Chiral Cation Doping for Modulating Structural Symmetry of 2D Perovskites.Journal of the American Chemical Society 145, no. 32 (August 2023): 17831–44. https://doi.org/10.1021/jacs.3c04832.
Xie Y, Morgenstein J, Bobay BG, Song R, Caturello NAMS, Sercel PC, et al. Chiral Cation Doping for Modulating Structural Symmetry of 2D Perovskites. Journal of the American Chemical Society. 2023 Aug;145(32):17831–44.
Xie, Yi, et al. “Chiral Cation Doping for Modulating Structural Symmetry of 2D Perovskites.Journal of the American Chemical Society, vol. 145, no. 32, Aug. 2023, pp. 17831–44. Epmc, doi:10.1021/jacs.3c04832.
Xie Y, Morgenstein J, Bobay BG, Song R, Caturello NAMS, Sercel PC, Blum V, Mitzi DB. Chiral Cation Doping for Modulating Structural Symmetry of 2D Perovskites. Journal of the American Chemical Society. 2023 Aug;145(32):17831–17844.
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

32

Start / End Page

17831 / 17844

Related Subject Headings

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