Tunable Rare-Earth fcu-MOFs: A Platform for Systematic Enhancement of CO<sub>2</sub> Adsorption Energetics and Uptake

Youssef Belmabkhout, Mohamed Eddaoudi, Mohamed H. Alkordi, Yunling Liu, Łukasz Wojtas, Amy Cairns, Dong‐Xu Xue
2013-04-22

SCID:  54.1/yvfw7pf5
A series of fcu-MOFs based on rare-earth (RE) metals and linear fluorinated/nonfluorinated, homo/heterofunctional ligands were targeted and synthesized. This particular fcu-MOF platform was selected because of its unique structural characteristics combined with the ability/potential to dictate and regulate its chemical properties (e.g., tuning of the electron-rich RE metal ions and high localized charge density, a property arising from the proximal positioning of polarizing tetrazolate moieties and fluoro-groups that decorate the exposed inner surfaces of the confined conical cavities). These features permitted a systematic gas sorption study to evaluate/elucidate the effects of distinctive parameters on CO2-MOF sorption energetics. Our study supports the importance of the synergistic effect of exposed open metal sites and proximal highly localized charge density toward materials with enhanced CO2 sorption energetics.
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2013-04-22
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Youssef Belmabkhout
Mohamed Eddaoudi
Mohamed H. Alkordi
Yunling Liu
Łukasz Wojtas
Amy Cairns
Dong‐Xu Xue
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