| Literature DB >> 24633837 |
Mariolino Carta1, Matthew Croad, Richard Malpass-Evans, Johannes C Jansen, Paola Bernardo, Gabriele Clarizia, Karel Friess, Marek Lanč, Neil B McKeown.
Abstract
A highly gas permeable polymer with exceptional size selectivity is prepared by fusing triptycene units together via a poly-merization reaction involving Tröger's base formation. The extreme rigidity of this polymer of intrinsic microporosity (PIM-Trip-TB) facilitates gas permeability data that lie well above the benchmark 2008 Robeson upper bounds for the important O2 /N2 and H2 /N2 gas pairs.Entities:
Keywords: gas separation; intrinsic microporosity; polymer membranes; triptycene
Year: 2014 PMID: 24633837 PMCID: PMC4223990 DOI: 10.1002/adma.201305783
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849
Figure 1The molecular structures of a) PIM-1; b) PIM-EA-TB and c) PIM-Trip-TB.
Figure 2Robeson plots for a) O2/N2; b); H2/N2 c) CO2/CH4 and d) CO2/N2 gas pairs showing the data for methanol treated PIM-Trip-TB with data points for a 132 μm film and for PIM-EA-TB for a 180 μm film. Data at lower permeability, joined by a line, are for the same films but aged 100 and 470 days, respectively. The gray and black lines represent the 199110 and 200811 upper bounds, respectively. Also shown, as crosses, are data points of other PIMs reported since the upper bound was updated in 2008.
The gas permeabilities Px, diffusivity Dx, solubility coefficient Sx and ideal selectivities α (Px/PN2) for a methanol treated film of PIM-Trip-TB of thickness = 132 μm with comparable data for a the same film obtained after 100 days given in parentheses. To allow a direct comparison, data from a film of PIM-EA-TB (180 μm) (and aged for 470 day in parentheses), following an identical pre-treatment, is provided. Px and Dx values were determined by time lag analysis, Sx was determined by gravimetric sorption measurements
| N2 | O2 | CO2 | CH4 | H2 | He | |
|---|---|---|---|---|---|---|
| 629 (189) | 2718 (1073) | 9709 (3951) | 905 (218) | 8039 (4740) | 2500 (1585) | |
| – (–) | 4.3 (5.7) | 15.9 (21.0) | 1.4 (1.4) | 12.8 (25.1) | 4.0 (8.4) | |
| 135 (28.5) | 462 (148) | 111 (34.6) | 48.9 (7.5) | >7800 (4900) | >10000 | |
| – | 3.4 (5.2) | 0.82 (1.3) | 0.36 (0.26) | 58 | 74 | |
| 5.3 | – | 51.0 | 21.5 | – | – | |
| – | – | 9.6 | 4.1 | – | – | |
| 580 (188) | 2294 (933) | 7696 (2644) | 774 (219) | 8114 (4442) | 2685 (1630) | |
| – (–) | 3.95 (4.95) | 13.3 (14.1) | 1.3 (1.2) | 14.0 (23.6) | 4.6 (8.7) | |
| 89 (22.9) | 310 (104) | 76.4 (35.2) | 31.9 (6.9) | >7200 (4000) | >10000 | |
| – | 3.48 (4.5) | 0.82 (1.54) | 0.36 (0.30) | 81 | 113 | |
| 4.4 | – | 47.0 | 17.2 | |||
| – | – | 10.8 | 3.9 | – | – |
For He and H2 the time lag is too short (<1 s) for absolute determination of D and the indicated value of D is the minimum limit.
Figure 3a) Sorption isotherms for CO2, CH4 and N2 in MeOH treated PIM-Trip-TB film of 132 μm thickness. Thin solid lines represent the fit of the data according to the dual mode sorption model and thick solid lines represent the corresponding ideal sorption selectivity calculated from the curve fit. b) Relative differences in sorption of CO2, CH4 and N2 between MeOH treated films of PIM-Trip-TB and PIM-EA-TB. Positive values indicate a pressure where gas sorption in PIM-Trip-TB is higher than that of PIM-EA-TB.