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Surface Functionalization of Metal-Organic Frameworks for Improved Moisture Resistance
Published on: September 5, 2018
Bismuth Coordination Polymers with Fluorinated Linkers: Aqueous Stability, Bivolatility, and Adsorptive Behavior
Alice Lulich1, Mehran Amiri1, Doctor Stephen1
1Department of Chemistry, Oregon State University, Corvallis, Oregon 97331, United States.
Synthesizing bismuth coordination polymers (CPs) is difficult, but using a tetrafluoroterephthalate linker yielded three stable Bi-F4BDC structures. These CPs show varying methylene blue adsorption, with fluorinated ligands enhancing efficacy for potential thin film applications.
Area of Science:
- Materials Science
- Inorganic Chemistry
- Crystallography
Background:
- Bismuth metal-organic frameworks and coordination polymers (CPs) present synthesis challenges due to precursor insolubility and Bi3+ ligation lability.
- The intrinsic lone pair of Bi3+ contributes to asymmetric and labile coordination, complicating CP construction.
Purpose of the Study:
- To synthesize and structurally characterize novel bismuth coordination polymers (Bi-CPs) using a tetrafluoroterephthalate (F4BDC) linker.
- To investigate the impact of high acidity and mineralizers on the synthesis and assembly of Bi-CPs.
- To evaluate the adsorption properties and thermal stability of the synthesized Bi-CPs.
Main Methods:
- Single-crystal X-ray diffraction for structural characterization of Bi-CPs.
- Powder X-ray diffraction and microscopic imaging for purity and stability assessment.
- Methylene blue adsorption studies and thermogravimetric analysis (TGA) for performance evaluation.
Main Results:
- Three distinct Bi-F4BDC structures were synthesized, featuring Bi chains, dimers, and tetramers, with linker pi-pi stacking influencing framework assembly.
- High purity and aqueous stability were confirmed for the Bi-F4BDC compounds.
- Methylene blue adsorption efficacy varied among phases, with fluorinated ligands contributing to hydrophobicity and improved adsorption.
- TGA revealed simultaneous ligand degradation and volatile bismuth compound formation, suggesting potential for chemical vapor deposition.
Conclusions:
- The tetrafluoroterephthalate linker facilitates the synthesis of stable bismuth coordination polymers.
- Framework structures and adsorption properties are influenced by linker interactions and ligand hydrophobicity.
- The synthesized Bi-CPs demonstrate potential for pollutant adsorption and thin film deposition applications.
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