Steric stabilization of colloidal UiO-66 nanocrystals with oleylammonium octadecylphosphonate

We report the synthesis and characterization of octahedral UiO-66 nanocrystals ( = 17-25 nm) terminated with amine, oleate, and octadecylphosphonate ligands. Acetate capped UiO-66 nanocrystals were dispersed in toluene using oleic acid and oleylamine. Ligand exchange with octadecylphosphonic acid pr...

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Veröffentlicht in:Chemical science (Cambridge) 2025-01, Vol.16 (2), p.933-938
Hauptverfasser: Park, Sungho V, Bhai, Lakshmi, Lee, Gahyun Annie, Park, Ah-Hyung Alissa, Marbella, Lauren E, Owen, Jonathan S
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Sprache:eng
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Zusammenfassung:We report the synthesis and characterization of octahedral UiO-66 nanocrystals ( = 17-25 nm) terminated with amine, oleate, and octadecylphosphonate ligands. Acetate capped UiO-66 nanocrystals were dispersed in toluene using oleic acid and oleylamine. Ligand exchange with octadecylphosphonic acid produces ammonium octadecylphosphonate terminated nanocrystals with coverages of 2.6-3.2 chains per nm that stabilize colloidal dispersions in nonpolar solvents. Liquid phase H and P nuclear magnetic resonance (NMR) spectra of the linkers and surface ligands display line shapes that are broadened by slow tumbling of the nanocrystals. Octadecylphosphonate functionalized MOFs have up to ∼30% carbon dioxide absorption capacities compared to bulk UiO-66 after correcting for the ligand mass. These results illustrate the intriguing perspective that MOF nanocrystals can be characterized and manipulated like a macromolecular complex and represent an important milestone in the nascent field of MOF surface science.
ISSN:2041-6520
2041-6539
DOI:10.1039/d4sc06528j