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Synthesis and Selective CO2 Capture Properties of a Series of Hexatopic Linker-Based Metal-Organic Frameworks

Authors
Phuong T. K NguyenHuong T. D. NguyenHung Q PhampKim, JaheonKyle E. CordovaFurukawa, Hiroyasu
Issue Date
19-Oct-2015
Publisher
AMER CHEMICAL SOC
Citation
INORGANIC CHEMISTRY, v.54, no.20, pp.10065 - 10072
Journal Title
INORGANIC CHEMISTRY
Volume
54
Number
20
Start Page
10065
End Page
10072
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/8619
DOI
10.1021/acs.inorgchem.5b01900
ISSN
0020-1669
Abstract
Four crystalline, porous metal organic frameworks (MOFs), based on a new hexatopic linker, 1',2',3',4',5',6'-hexakis(4-carboxyphenyl)benzene (H6CPB), were synthesized and fully characterized. Interestingly, two members of this series exhibited new topologies, namely, htp and hhp, which were previously unseen in MOP chemistry. Gas adsorption measurements revealed that all members exhibited high CO2 selectivity over N-2 and CH4. Accordingly, breakthrough measurements were performed on a representative example, in which the effective separation of CO2 from binary mixtures containing either N-2 or CH4 was demonstrated without any loss in performance over three consecutive cycles.
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