articleTop 1% cited
Chemical tuning of CO2 sorption in robust nanoporous organic polymers
Chemical Science · 2011 · Vol. 2(6) · pp. 1173–1173
Robert Dawson(University of Liverpool)Dave J. Adams(University of Liverpool)Andrew I. Cooper✉(University of Liverpool)
Abstract
We report here the carbon dioxide sorption properties for a series of conjugated microporous polymer (CMP) networks. These CMP materials incorporate a range of chemical functionalities including carboxylic acids, amines, hydroxyl groups, and methyl groups. The carboxylic acid functionalised network, rather than its amine analogue, shows the highest isosteric heat of sorption for CO2. This supports recent computational predictions for metal–organic frameworks and suggests that acid-functionalised frameworks could outperform more widely studied amine sorbents in CO2 capture and separation application.
Metal-Organic Frameworks: Synthesis and ApplicationsCovalent Organic Framework ApplicationsMembrane Separation and Gas TransportSorptionMicroporous materialAmine gas treatingNanoporousPolymerCarboxylic acidChemistryMetal-organic frameworkConjugated microporous polymerConjugated system
Funding
- Royal Society
- Engineering and Physical Sciences Research Council
Citations
565
FWCI
27.71
field-weighted impact
References
64
Percentile
100%
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