2022
DOI: 10.1016/j.molliq.2022.120248
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Molecular insights into the CO2 separation mechanism of GO supported deep eutectic solvent membrane

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Cited by 12 publications
(2 citation statements)
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“…With the addition of choline chloride in DES, the increased viscosity can be mostly attributed to the formation of hydrogen bonds that result in the loss of molecular mobility. Meanwhile, previous simulation 34 and self-diffusion coefficient tests (Fig. S8†) proved that DES6 exhibited the best conductivity performance under nanoconfinement.…”
Section: Resultsmentioning
confidence: 68%
“…With the addition of choline chloride in DES, the increased viscosity can be mostly attributed to the formation of hydrogen bonds that result in the loss of molecular mobility. Meanwhile, previous simulation 34 and self-diffusion coefficient tests (Fig. S8†) proved that DES6 exhibited the best conductivity performance under nanoconfinement.…”
Section: Resultsmentioning
confidence: 68%
“…Based on the experimental results, it was shown that ChCl-Oxa-based films had the highest CO 2 permeability and selectivity (permeability, 37.30 Barrer; selectivity, 60.16), while ChCl-Ma (permeability, 34.00 Barrer; selectivity, 55.74) and ChCl-Tart (permeability, 30.32 Barrer; selectivity, 51.39) had lower performance. Zhang et al 109 provide an atomic and molecular level understanding for the separation of CO 2 by DES membranes made of 2D materials. The authors synthesized different ratios of ChCl-EG for the preparation of graphene oxide supported DES (ChCl-EG) membrane (GO-SdesM) and explained the variation of gas permeation pressure with DES molar ratio by means of simulations.…”
Section: Dess Cooperates With Other Methods To Absorb Comentioning
confidence: 99%