CO2/N(2)Separation Properties of Polyimide-Based Mixed-Matrix Membranes Comprising UiO-66 with Various Functionalities

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Nanocrystalline UiO-66 and its derivatives (containing -NH2, -Br, -(OH)(2)) were developed via pre-synthetic functionalization and incorporated into a polyimide membrane to develop a mixed-matrix membrane (MMM) for CO2/N(2)separation. Incorporation of the non-functionalized UiO-66 nanocrystals into the polyimide membrane successfully improved CO(2)permeability, with a slight decrease in CO2/N(2)selectivity, owing to its large accessible surface area. The addition of other functional groups further improved the CO2/N(2)selectivity of the polymeric membrane, with UiO-66-NH2, UiO-66-Br, and UiO-66-(OH)(2)demonstrating improvements of 12%, 4%, and 17%, respectively. Further evaluation by solubility-diffusivity analysis revealed that the functionalized UiO-66 in MMMs can effectively increase CO(2)diffusivity while suppressing N(2)sorption, thus, resulting in improved CO2/N(2)selectivity. Such results imply that the structural tuning of UiO-66 by the incorporation of various functional groups is an effective strategy to improve the CO(2)separation performance of MMMs.
Publisher
MDPI
Issue Date
2020-07
Language
English
Article Type
Article
Citation

MEMBRANES, v.10, no.7

ISSN
2077-0375
DOI
10.3390/membranes10070154
URI
http://hdl.handle.net/10203/276106
Appears in Collection
CBE-Journal Papers(저널논문)
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