| Literature DB >> 31277233 |
Kathryn E O'Harra1, Irshad Kammakakam1, Emily M Devriese1, Danielle M Noll1, Jason E Bara2, Enrique M Jackson3.
Abstract
Three new isomeric 6FDA-based polyimide-ionenes, withEntities:
Keywords: 6FDA polyimides; CO2 Separation; Hybrid Membranes; ionenes
Year: 2019 PMID: 31277233 PMCID: PMC6681123 DOI: 10.3390/membranes9070079
Source DB: PubMed Journal: Membranes (Basel) ISSN: 2077-0375
Scheme 1Synthesis of aromatic, fluorinated dianhydride, 4,4′-(hexafluoroisopropylidene)-diphthalic anhydride (6FDA)-based imide monomers. a: DMF (5 °C, 1 h; RT, 24 h); b: Toluene (125 °C, 24 h); c: Ac2O (70 °C, 16 h).
Scheme 2Synthesis of imidazolium polyimide-ionene derivatives. a: DMF (120 °C, 24 h); b: H2O, LiTf2N (RT, 24 h).
Figure 1[Rmim][Tf2N] ionic liquids (ILs) utilized to form polyimide-ionene + IL composites.
Mass/Ratio calculations for the membrane fabrications.
| Materials | Mass/Ratios | ||||
|---|---|---|---|---|---|
| ID | Polyimide-Ionene | IL (Equivalents) | Polyimide-Ionene [g] | IL [g] | Vtotal w/Solvent [mL] |
|
| [6FDA I4A pXy][Tf2N] | Neat | 0.75 | - | 7.5 |
|
| [C2mim][Tf2N] (1) | 0.50 | 0.141 | 9 | |
|
| [C2mim][Tf2N] (2) | 0.50 | 0.281 | 9 | |
|
| [C4mim][Tf2N] (1) | 0.50 | 0.151 | 9 | |
|
| [C4mim][Tf2N] (2) | 0.50 | 0.301 | 9 | |
|
| [Bnmim][Tf2N] (2) | 0.50 | 0.326 | 9 | |
|
| [6FDA I3A mXy][Tf2N] | Neat | 0.75 | - | 7.5 |
|
| [C2mim][Tf2N] (2) | 0.50 | 0.281 | 9 | |
|
| [C4mim][Tf2N] (2) | 0.50 | 0.301 | 9 | |
|
| [Bnmim][Tf2N] (2) | 0.50 | 0.326 | 9 | |
|
| [6FDA I2A oXy][Tf2N] | Neat | 0.75 | - | 7.5 |
|
| [C2mim][Tf2N] (2) | 0.50 | 0.281 | 9 | |
|
| [C4mim][Tf2N] (2) | 0.50 | 0.301 | 9 | |
|
| [Bnmim][Tf2N] (2) | 0.50 | 0.326 | 9 | |
Glass transition and d-spacing values that characterize 6FDA polyimide-ionenes and their composites with IL.
| ID | Polyimide-Ionene | IL (Equivalents) | Tg [°C] | |
|---|---|---|---|---|
|
| [6FDA I4A pXy][Tf2N] | Neat | 205.9 | 4.61 |
|
| [C2mim][Tf2N] (1) | 199.4 | 4.55 | |
|
| [C2mim][Tf2N] (2) | 209.9 | 3.92 | |
|
| [C4mim][Tf2N] (1) | 182.4 | 4.83 | |
|
| [C4mim][Tf2N] (2) | 185.2 | 4.33 | |
|
| [Bnmim][Tf2N] (2) | 218.9 | 4.73 | |
|
| [6FDA I3A mXy][Tf2N] | Neat | 236.2 | 4.66 |
|
| [C2mim][Tf2N] (2) | 219.7 | 4.12 | |
|
| [C4mim][Tf2N] (2) | 199.2 | 4.24 | |
|
| [Bnmim][Tf2N] (2) | 185.5 | 4.11 | |
|
| [6FDA I2A oXy][Tf2N] | Neat | 221.8 | 4.61 |
|
| [C2mim][Tf2N] (2) | 221.4 | 4.55 | |
|
| [C4mim][Tf2N] (2) | 243.3 | 4.35 | |
|
| [Bnmim][Tf2N] (2) | 236.3 | 4.26 |
Figure 2thermogravimetric analysis (TGA) data for polyimide-ionene derivatives, neat or with specified IL content.
Figure 3MALDI-TOF MS spectra for PI-ionenes.
Figure 4XRD profiles of the six [6FDA I4A pXy][Tf2N] derivatives.
Figure 5Membranes (~3′ in diameter) over their respective structures. [6FDA I4A pXy][Tf2N]: [C2mim][Tf2N] (left) and [6FDA I4A pXy][Tf2N]: [Bnmim][Tf2N] (right).
Pure Gas Permeabilities (P)a and Permselectivities (α) for the neat [6FDA I4A pXy][Tf2N] ionene and composite membranes with [C4mim][Tf2N] and [Bnmim][Tf2N] at 3 atm and 20 °C b.
| [6FDA I4A pXy][Tf2N] |
|
|
|
|
|
|---|---|---|---|---|---|
|
| 2.15 ± 0.16 | 0.103 ± 0.01 | 0.161 ± 0.02 | 20.9 ± 2 | 13.4 ± 1 |
|
| 4.57 ± 0.30 | 0.239 ± 0.02 | 0.189 ± 0.02 | 19.1 ± 1 | 24.8 ± 2 |
|
| 6.32 ± 0.15 | 0.282 ± 0.02 | 0.294 ± 0.02 | 22.4 ± 1 | 21.5 ± 1 |
aP in barrers, where 1 barrer = 10−10 (cm3STP cm)/(cm2 s cmHg).
bError represents one standard deviation.