The enhancement of chain rigidity and gas transport performance of polymers of intrinsic microporosity intramolecular locking of the spiro-carbon

Here, we present a new strategy to improve the rigidity of PIM-1 through the introduction of 8-membered ring locking into the flexible spiro-carbon pivot point to produce an interlocked polycyclic structure. This locked version of PIM-1 shows simultaneous increases in both permeability and selectivi...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2016-05, Vol.52 (39), p.6553-6556
Hauptverfasser: Zhang, Jian, Kang, Hong, Martin, Jacob, Zhang, Shouhai, Thomas, Sylvie, Merkel, Tim C, Jin, Jianyong
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Zusammenfassung:Here, we present a new strategy to improve the rigidity of PIM-1 through the introduction of 8-membered ring locking into the flexible spiro-carbon pivot point to produce an interlocked polycyclic structure. This locked version of PIM-1 shows simultaneous increases in both permeability and selectivity that place it well above the Robeson upper bound for a number of important gas pairs. Molecular modelling demonstrates that the locked version of PIM-1 is much more rigid. We present a new strategy to improve the rigidity of PIM-1 through the introduction of 8-membered ring locking into the flexible spiro-carbon pivot point to produce a more rigid interlocked polycyclic structure.
ISSN:1359-7345
1364-548X
DOI:10.1039/c6cc02308h