Authors
Timothy C Wang, Wojciech Bury, Diego A Gómez-Gualdrón, Nicolaas A Vermeulen, Joseph E Mondloch, Pravas Deria, Kainan Zhang, Peyman Z Moghadam, Amy A Sarjeant, Randall Q Snurr, J Fraser Stoddart, Joseph T Hupp, Omar K Farha
Publication date
2015/3/18
Journal
Journal of the American Chemical Society
Volume
137
Issue
10
Pages
3585-3591
Publisher
American Chemical Society
Description
An isoreticular series of metal–organic frameworks (MOFs) with the ftw topology based on zirconium oxoclusters and tetracarboxylate linkers with a planar core (NU-1101 through NU-1104) has been synthesized employing a linker expansion approach. In this series, NU-1103 has a pore volume of 2.91 cc g–1 and a geometrically calculated surface area of 5646 m2 g–1, which is the highest value reported to date for a zirconium-based MOF and among the largest that have been reported for any porous material. Successful activation of the MOFs was proven based on the agreement of pore volumes and BET areas obtained from simulated and experimental isotherms. Critical for practical applications, NU-1103 combines for the first time ultrahigh surface area and water stability, where this material retained complete structural integrity after soaking in water. Pressure range selection for the BET calculations on these …
Total citations
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Scholar articles
TC Wang, W Bury, DA Gómez-Gualdrón… - Journal of the American Chemical Society, 2015