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Meltable Hybrid Antimony and Bismuth Iodide One-Dimensional Perovskites.

Publication ,  Journal Article
Crace, EJ; Singh, A; Haley, S; Claes, B; Mitzi, DB
Published in: Inorganic chemistry
October 2023

Hybrid lead-halide perovskites have been studied extensively for their promising optoelectronic properties and prospective applications, including photovoltaics, solid-state lighting, and radiation detection. Research into these materials has also been aided by the simple and low-temperature synthetic conditions involved in solution-state deposition/crystallization or melt-processing techniques. However, concern over lead toxicity has plagued the field since its infancy. One of the most promising routes to mitigating toxicity in hybrid perovskite materials is substituting isoelectronic Bi(III) for Pb(II). Various methods have been developed to allow pnictide-based systems to capture properties of the Pb(II) analogues, but the ability to melt extended hybrid pnictide-halide materials has not been investigated. In this work, we prepare a series of one-dimensional antimony- and bismuth-iodide hybrid materials employing tetramethylpiperazinium (TMPZ)-related cations. We observe, for the first time, the ability to melt extended hybrid pnictide-halide materials for both the Sb(III) and Bi(III) systems. Additionally, we find that Sb(III) analogues melt at lower temperatures and attribute this observation to structural changes induced by the increased stereochemical activity of the Sb(III) lone pair coupled with the reduction in effective dimensionality due to steric interactions with the organic cations. Finally, we demonstrate the ability to melt process phase pure thin films of (S-MeTMPZ)SbI5.

Duke Scholars

Published In

Inorganic chemistry

DOI

EISSN

1520-510X

ISSN

0020-1669

Publication Date

October 2023

Volume

62

Issue

39

Start / End Page

16161 / 16169

Related Subject Headings

  • Inorganic & Nuclear Chemistry
  • 3403 Macromolecular and materials chemistry
  • 3402 Inorganic chemistry
  • 0399 Other Chemical Sciences
  • 0306 Physical Chemistry (incl. Structural)
  • 0302 Inorganic Chemistry
 

Citation

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Crace, E. J., Singh, A., Haley, S., Claes, B., & Mitzi, D. B. (2023). Meltable Hybrid Antimony and Bismuth Iodide One-Dimensional Perovskites. Inorganic Chemistry, 62(39), 16161–16169. https://doi.org/10.1021/acs.inorgchem.3c02441
Crace, Ethan J., Akash Singh, Stella Haley, Bethany Claes, and David B. Mitzi. “Meltable Hybrid Antimony and Bismuth Iodide One-Dimensional Perovskites.Inorganic Chemistry 62, no. 39 (October 2023): 16161–69. https://doi.org/10.1021/acs.inorgchem.3c02441.
Crace EJ, Singh A, Haley S, Claes B, Mitzi DB. Meltable Hybrid Antimony and Bismuth Iodide One-Dimensional Perovskites. Inorganic chemistry. 2023 Oct;62(39):16161–9.
Crace, Ethan J., et al. “Meltable Hybrid Antimony and Bismuth Iodide One-Dimensional Perovskites.Inorganic Chemistry, vol. 62, no. 39, Oct. 2023, pp. 16161–69. Epmc, doi:10.1021/acs.inorgchem.3c02441.
Crace EJ, Singh A, Haley S, Claes B, Mitzi DB. Meltable Hybrid Antimony and Bismuth Iodide One-Dimensional Perovskites. Inorganic chemistry. 2023 Oct;62(39):16161–16169.
Journal cover image

Published In

Inorganic chemistry

DOI

EISSN

1520-510X

ISSN

0020-1669

Publication Date

October 2023

Volume

62

Issue

39

Start / End Page

16161 / 16169

Related Subject Headings

  • Inorganic & Nuclear Chemistry
  • 3403 Macromolecular and materials chemistry
  • 3402 Inorganic chemistry
  • 0399 Other Chemical Sciences
  • 0306 Physical Chemistry (incl. Structural)
  • 0302 Inorganic Chemistry