1 |
Bisimidazolium PEG-mediated crosslinked 6FDA-durene polyimide membranes for CO2 separation Hossain I, Al Munsur A, Choi O, Kim TH Separation and Purification Technology, 224, 180, 2019 |
2 |
Gas permeation in thin films of "high free-volume" glassy perfluoropolymers: Part II. CO2 plasticization and sorption Tiwari RR, Smith ZP, Lin HQ, Freeman BD, Paul DR Polymer, 61, 1, 2015 |
3 |
Molecular interaction, gas transport properties and plasticization behavior of cPIM-1/Torlon blend membranes Yong WF, Li FY, Chung TS, Tong YW Journal of Membrane Science, 462, 119, 2014 |
4 |
Performance and plasticization behavior of polymer-MOF membranes for gas separation at elevated pressures Shahid S, Nijmeijer K Journal of Membrane Science, 470, 166, 2014 |
5 |
How do polymerized room-temperature ionic liquid membranes plasticize during high pressure CO2 permeation? Simons K, Nijmeijer K, Bara JE, Noble RD, Wessling M Journal of Membrane Science, 360(1-2), 202, 2010 |
6 |
Novel polyimide ionomers: CO2 plasticization, morphology, and ion distribution Taubert A, Wind JD, Paul DR, Koros WJ, Winey KI Polymer, 44(6), 1881, 2003 |
7 |
Synthesis, characterization, and expansion of poly(tetrafluoroethylene-co-hexafluoropropylene)/polystyrene blends processed in supercritical carbon dioxide Arora KA, Lesser AJ, McCarthy TJ Macromolecules, 32(8), 2562, 1999 |
8 |
Carbon dioxide as a continuous phase for polymer synthesis Canelas DA, Burke ALC, DeSimone JM Plastics Engineering, 53(12), 37, 1997 |
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Metastable Polymer Blends by Precipitation with a Compressed Fluid Antisolvent Mawson S, Kanakia S, Johnston KP Polymer, 38(12), 2957, 1997 |