Publication | Closed Access
Energy‐Efficient Hydrogen Separation by AB‐Type Ladder‐Polymer Molecular Sieves
214
Citations
30
References
2014
Year
Hydrogen Energy TechnologyChemical EngineeringEngineeringEnergy‐efficient Hydrogen SeparationMolecular SievingPolymer ScienceHydrogen SelectivityPorous PolymerOrganic ChemistryIntrinsic MicroporosityHydrogenChemistryEnergyPolymerization KineticsFunctional PolymerSelective PimPolymer ChemistryPolymers
Increases in hydrogen selectivity of more than 100% compared with the most selective ladder polymer of intrinsic microporosity (PIM) reported to date are achieved with self-polymerized A-B-type ladder monomers comprising rigid and three-dimensional 9,10-dialkyl-substituted triptycene moieties. The selectivities match those of materials commercially employed in hydrogen separation, but the gas permeabilities are 150-fold higher. This new polymer molecular sieve is also the most selective PIM for air separation.
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