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Tailoring CsPbBr(3) Growth via Non-Polar Solvent Choice and Heating Methods

[Image: see text] This study describes an investigation of the role of non-polar solvents on the growth of cesium lead halide (CsPbX(3) X = Br and I) nanoplatelets. We employed two solvents, benzyl ether (BE) and 1-octadecene (ODE), as well as two nucleation and growth mechanisms, one-pot, facilitat...

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Autores principales: Zamani, Hediyeh, Chiang, Tsung-Hsing, Klotz, Kaylie R., Hsu, Annie J., Maye, Mathew M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9352358/
https://www.ncbi.nlm.nih.gov/pubmed/35862294
http://dx.doi.org/10.1021/acs.langmuir.2c01214
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author Zamani, Hediyeh
Chiang, Tsung-Hsing
Klotz, Kaylie R.
Hsu, Annie J.
Maye, Mathew M.
author_facet Zamani, Hediyeh
Chiang, Tsung-Hsing
Klotz, Kaylie R.
Hsu, Annie J.
Maye, Mathew M.
author_sort Zamani, Hediyeh
collection PubMed
description [Image: see text] This study describes an investigation of the role of non-polar solvents on the growth of cesium lead halide (CsPbX(3) X = Br and I) nanoplatelets. We employed two solvents, benzyl ether (BE) and 1-octadecene (ODE), as well as two nucleation and growth mechanisms, one-pot, facilitated by microwave irradiation (MWI)-based heating, and hot-injection, using convection. Using BE and MWI, large mesoscale CsPbBr(3) nanoplatelets were produced, whereas use of ODE produced small crystallites. Differences between the products were observed by optical spectroscopies, which showed first band edge absorptions consistent with thicknesses of ∼9 nm [∼15 monolayer (ML)] for the BE-CsPbBr(3) and ∼5 nm (∼9 ML) for ODE-CsPbBr(3). Both products had orthorhombic crystal structures, with the BE-CsPbBr(3) revealing significant preferred orientation diffraction signals consistent with the asymmetric and two-dimensional platelet morphology. The differences in the final morphology were also observed for products formed via hot injection, with BE-CsPbBr(3) showing thinner square platelets with thicknesses of ∼2 ML and ODE-CsPbBr(3) showing similar morphologies and small crystallite sizes. To understand the role solvent plays in crystal growth, we studied lead plumbate precursor (PbBr(n)(2–n)) formation in both solvents, as well as solvent plus ligand solutions. The findings suggest that BE dissolves PbBr(2) salts to a higher degree than ODE, and that this BE to precursor affinity persists during growth.
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spelling pubmed-93523582022-08-05 Tailoring CsPbBr(3) Growth via Non-Polar Solvent Choice and Heating Methods Zamani, Hediyeh Chiang, Tsung-Hsing Klotz, Kaylie R. Hsu, Annie J. Maye, Mathew M. Langmuir [Image: see text] This study describes an investigation of the role of non-polar solvents on the growth of cesium lead halide (CsPbX(3) X = Br and I) nanoplatelets. We employed two solvents, benzyl ether (BE) and 1-octadecene (ODE), as well as two nucleation and growth mechanisms, one-pot, facilitated by microwave irradiation (MWI)-based heating, and hot-injection, using convection. Using BE and MWI, large mesoscale CsPbBr(3) nanoplatelets were produced, whereas use of ODE produced small crystallites. Differences between the products were observed by optical spectroscopies, which showed first band edge absorptions consistent with thicknesses of ∼9 nm [∼15 monolayer (ML)] for the BE-CsPbBr(3) and ∼5 nm (∼9 ML) for ODE-CsPbBr(3). Both products had orthorhombic crystal structures, with the BE-CsPbBr(3) revealing significant preferred orientation diffraction signals consistent with the asymmetric and two-dimensional platelet morphology. The differences in the final morphology were also observed for products formed via hot injection, with BE-CsPbBr(3) showing thinner square platelets with thicknesses of ∼2 ML and ODE-CsPbBr(3) showing similar morphologies and small crystallite sizes. To understand the role solvent plays in crystal growth, we studied lead plumbate precursor (PbBr(n)(2–n)) formation in both solvents, as well as solvent plus ligand solutions. The findings suggest that BE dissolves PbBr(2) salts to a higher degree than ODE, and that this BE to precursor affinity persists during growth. American Chemical Society 2022-07-21 2022-08-02 /pmc/articles/PMC9352358/ /pubmed/35862294 http://dx.doi.org/10.1021/acs.langmuir.2c01214 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Zamani, Hediyeh
Chiang, Tsung-Hsing
Klotz, Kaylie R.
Hsu, Annie J.
Maye, Mathew M.
Tailoring CsPbBr(3) Growth via Non-Polar Solvent Choice and Heating Methods
title Tailoring CsPbBr(3) Growth via Non-Polar Solvent Choice and Heating Methods
title_full Tailoring CsPbBr(3) Growth via Non-Polar Solvent Choice and Heating Methods
title_fullStr Tailoring CsPbBr(3) Growth via Non-Polar Solvent Choice and Heating Methods
title_full_unstemmed Tailoring CsPbBr(3) Growth via Non-Polar Solvent Choice and Heating Methods
title_short Tailoring CsPbBr(3) Growth via Non-Polar Solvent Choice and Heating Methods
title_sort tailoring cspbbr(3) growth via non-polar solvent choice and heating methods
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9352358/
https://www.ncbi.nlm.nih.gov/pubmed/35862294
http://dx.doi.org/10.1021/acs.langmuir.2c01214
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