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Bismuth Coordination Polymers with Fluorinated Linkers: Aqueous Stability, Bivolatility, and Adsorptive Behavior

[Image: see text] Bismuth metal–organic frameworks and coordination polymers (CP) are challenging to synthesize, given the poor solubility of bismuth precursors and asymmetric and labile ligation of Bi(3+) due to its intrinsic lone pair. Here, we synthesize and structurally characterize three Bi(3+)...

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Autores principales: Lulich, Alice, Amiri, Mehran, Stephen, Doctor, Shohel, Mohammad, Mao, Zhiwei, Nyman, May
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10034978/
https://www.ncbi.nlm.nih.gov/pubmed/36969471
http://dx.doi.org/10.1021/acsomega.3c00114
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author Lulich, Alice
Amiri, Mehran
Stephen, Doctor
Shohel, Mohammad
Mao, Zhiwei
Nyman, May
author_facet Lulich, Alice
Amiri, Mehran
Stephen, Doctor
Shohel, Mohammad
Mao, Zhiwei
Nyman, May
author_sort Lulich, Alice
collection PubMed
description [Image: see text] Bismuth metal–organic frameworks and coordination polymers (CP) are challenging to synthesize, given the poor solubility of bismuth precursors and asymmetric and labile ligation of Bi(3+) due to its intrinsic lone pair. Here, we synthesize and structurally characterize three Bi(3+)-CPs, exploiting a tetrafluoroterephtalate (F(4)BDC) linker to determine the effect of high acidity on these synthesis and coordination challenges. Single-crystal X-ray diffraction characterization showed that pi–pi stacking of linkers directs framework arrangement and generally deters open porosity in the three structures, respectively featuring Bi chains (Bi(chain)-F(4)BDC), Bi dimers (Bi(2)-F(4)BDC) linked into chains, and Bi tetramers (Bi(4)-F(4)BDC). Powder X-ray diffraction and microscopic imaging show the high purity and stability of these compounds in water. Naphthalenedisulfonate (NDS) was used as a mineralizer in the synthesis of (Bi(chain)-F(4)BDC) and (Bi(4)-F(4)BDC), and studies of its role in assembly pathways yielded two additional structures featuring mixed NDS and F(4)BDC, respectively, linking monomer and octamer Bi nodes, and confirmed that F(4)BDC is the preferred (less labile) linker. Methylene blue (MB) adsorption studies show differing efficacies of the three Bi-F(4)BDC phases, attributed to surface characteristics of the preferential growth facets, while generally most effective adsorption is attributed to the hydrophobicity of fluorinated ligands. Finally, thermogravimetric analysis of all three Bi-F(4)BDC phases indicates simultaneous ligand degradation and in situ formation of volatile Bi compounds, which could be exploited in the chemical vapor deposition of Bi-containing thin films.
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spelling pubmed-100349782023-03-24 Bismuth Coordination Polymers with Fluorinated Linkers: Aqueous Stability, Bivolatility, and Adsorptive Behavior Lulich, Alice Amiri, Mehran Stephen, Doctor Shohel, Mohammad Mao, Zhiwei Nyman, May ACS Omega [Image: see text] Bismuth metal–organic frameworks and coordination polymers (CP) are challenging to synthesize, given the poor solubility of bismuth precursors and asymmetric and labile ligation of Bi(3+) due to its intrinsic lone pair. Here, we synthesize and structurally characterize three Bi(3+)-CPs, exploiting a tetrafluoroterephtalate (F(4)BDC) linker to determine the effect of high acidity on these synthesis and coordination challenges. Single-crystal X-ray diffraction characterization showed that pi–pi stacking of linkers directs framework arrangement and generally deters open porosity in the three structures, respectively featuring Bi chains (Bi(chain)-F(4)BDC), Bi dimers (Bi(2)-F(4)BDC) linked into chains, and Bi tetramers (Bi(4)-F(4)BDC). Powder X-ray diffraction and microscopic imaging show the high purity and stability of these compounds in water. Naphthalenedisulfonate (NDS) was used as a mineralizer in the synthesis of (Bi(chain)-F(4)BDC) and (Bi(4)-F(4)BDC), and studies of its role in assembly pathways yielded two additional structures featuring mixed NDS and F(4)BDC, respectively, linking monomer and octamer Bi nodes, and confirmed that F(4)BDC is the preferred (less labile) linker. Methylene blue (MB) adsorption studies show differing efficacies of the three Bi-F(4)BDC phases, attributed to surface characteristics of the preferential growth facets, while generally most effective adsorption is attributed to the hydrophobicity of fluorinated ligands. Finally, thermogravimetric analysis of all three Bi-F(4)BDC phases indicates simultaneous ligand degradation and in situ formation of volatile Bi compounds, which could be exploited in the chemical vapor deposition of Bi-containing thin films. American Chemical Society 2023-03-06 /pmc/articles/PMC10034978/ /pubmed/36969471 http://dx.doi.org/10.1021/acsomega.3c00114 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Lulich, Alice
Amiri, Mehran
Stephen, Doctor
Shohel, Mohammad
Mao, Zhiwei
Nyman, May
Bismuth Coordination Polymers with Fluorinated Linkers: Aqueous Stability, Bivolatility, and Adsorptive Behavior
title Bismuth Coordination Polymers with Fluorinated Linkers: Aqueous Stability, Bivolatility, and Adsorptive Behavior
title_full Bismuth Coordination Polymers with Fluorinated Linkers: Aqueous Stability, Bivolatility, and Adsorptive Behavior
title_fullStr Bismuth Coordination Polymers with Fluorinated Linkers: Aqueous Stability, Bivolatility, and Adsorptive Behavior
title_full_unstemmed Bismuth Coordination Polymers with Fluorinated Linkers: Aqueous Stability, Bivolatility, and Adsorptive Behavior
title_short Bismuth Coordination Polymers with Fluorinated Linkers: Aqueous Stability, Bivolatility, and Adsorptive Behavior
title_sort bismuth coordination polymers with fluorinated linkers: aqueous stability, bivolatility, and adsorptive behavior
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10034978/
https://www.ncbi.nlm.nih.gov/pubmed/36969471
http://dx.doi.org/10.1021/acsomega.3c00114
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