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Quantifying Ligand Binding to the Surface of Metal-Organic Frameworks.


ABSTRACT: The binding of molecules to the exterior surface of metal-organic frameworks (MOFs) is not a well-understood phenomenon. Herein, the surface chemistry of three MOFs, UiO-66, MIL-88B-NH2, and ZIF-8, is investigated using dye-displacement experiments. MOF particle surfaces were modified with ligand-appended BODIPY dyes. The ability of the coordinated dyes to be displaced by a variety of exogenous ligands was measured by ultraviolet-visible spectroscopy. This method allowed for measurement of apparent binding constants for different ligands to the MOF surface. As might be expected, ligand affinity was dependent on the nature of the underlying metal-ligand composition of the MOF. This work provides a quantitative evaluation of ligand binding to MOF surfaces and important insights for the modulation, modification, and manipulation of MOFs.

SUBMITTER: Wang A 

PROVIDER: S-EPMC10401703 | biostudies-literature | 2023 Aug

REPOSITORIES: biostudies-literature

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Quantifying Ligand Binding to the Surface of Metal-Organic Frameworks.

Wang Austin A   Barcus Kyle K   Cohen Seth M SM  

Journal of the American Chemical Society 20230724 30


The binding of molecules to the exterior surface of metal-organic frameworks (MOFs) is not a well-understood phenomenon. Herein, the surface chemistry of three MOFs, UiO-66, MIL-88B-NH<sub>2</sub>, and ZIF-8, is investigated using dye-displacement experiments. MOF particle surfaces were modified with ligand-appended BODIPY dyes. The ability of the coordinated dyes to be displaced by a variety of exogenous ligands was measured by ultraviolet-visible spectroscopy. This method allowed for measureme  ...[more]

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