188 Publications (Page 2 of 8)
2022
1,2,3-Trimethoxypropane: a bio-sourced glyme as electrolyte for lithium-O2 batteriesAlvarez-Tirado, M.⋅Castro, L.⋅Qian, S.⋅Bara, J.E.⋅Di Gennaro, M.⋅Gkagkas, K.⋅Guéguen, A. and Mecerreyes, D.Green Chemistry, vol. 24, pp. 6016-6025.
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1-Propyl-4(5)-Methylimidazole Isomers for Temperature Swing Solvent ExtractionQian, Shuai⋅Qian, S.⋅Ward, L.M.⋅Ward, Lauren M⋅Rakers, Luke S⋅Rakers, L.S.⋅Weinman, S.T.⋅Weinman, Steven T⋅Bara, Jason E and Bara, J.E.Molecules, vol. 27.
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Anionic Ring-Opening Polymerizations of N-Sulfonylaziridines in Ionic LiquidsGiri, C.⋅Sisk, S.E.⋅Reisman, L.⋅Kammakakam, I.⋅Bara, J.E.⋅West, K.N.⋅Rabideau, B.D. and Rupar, P.A.Macromolecules, vol. 55, pp. 623-629.
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Biofuel Additives: Thermodynamic Studies of Glycerol EthersAndreeva, I.V.⋅Turovtsev, V.V.⋅Qian, S.⋅Bara, J.E. and Verevkin, S.P.Industrial and Engineering Chemistry Research, vol. 61, pp. 15407-15413.
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Experimental and Computational Study of the Properties of Imidazole Compounds with Branched and Cycloalkyl SubstituentsQian, Shuai⋅Mileski, Patrick⋅Irvin, Adam C.⋅Soyemi, Ademola⋅Szilvási, Tibor and Bara, Jason E.Liquids, vol. 2, pp. 14–25.
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Glycerol‐derived solvents containing two or three distinct functional groups enabled by trifluoroethyl glycidyl ether. AIChE Journal
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Glycerol valorisation towards biofuel additivities: Thermodynamic studies of glycerol ethersAndreeva, I.V.⋅Zaitsau, D.H.⋅Qian, S.⋅Turovtzev, V.V.⋅Pimerzin, A.A.⋅Bara, J.E. and Verevkin, S.P.Chemical Engineering Science, vol. 247.
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Molecular aspects of temperature swing solvent extraction for brine desalination using imidazole-based solventsBarbosa, G.D.⋅Bara, J.E.⋅Weinman, S.T. and Turner, C.H.Chemical Engineering Science, vol. 247.
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Molecular simulation of glycerol-derived triether podands for lithium ion solvationBarbosa, G.D.⋅Bara, J.E. and Turner, C.H.Physical Chemistry Chemical Physics, vol. 24, pp. 9459-9466.
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Molecular simulation of glycerol-derived triether podands for lithium ion solvation. Physical Chemistry Chemical Physics
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Molecular simulation of poly(VDF-HFP) copolymer with imidazolium-based ionic liquid as an effective medium for biogas separationJung, A.⋅?eha, D.⋅Minofar, B.⋅Stanovsk?, P.⋅Pasichnyk, M.⋅P?ibyl, M.⋅Bara, J.E.⋅Friess, K.⋅Fíla, V. and Izák, P.Journal of Molecular Liquids, vol. 366.
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Molecular Simulation of Poly(Vdf-Hfp) Copolymer with Imidazolium-Based Ionic Liquid as an Effective Medium for Biogas SeparationIzák, P.⋅Jung, A.⋅?eha, D.⋅Minofar, B.⋅Stanovsk?, P.⋅Pasichnyk, M.⋅P?ibyl, M.⋅Bara, J.E. and Friess, K.
Poly(ether ether ketone) Ionenes: Ultrahigh-Performance Polymers Meet Ionic LiquidsO’Harra, K.⋅Kammakakam, I.⋅Shinde, P.⋅Giri, C.⋅Tuan, Y.⋅Jackson, E.M. and Bara, J.E.ACS Applied Polymer Materials, vol. 4, pp. 8365-8376.
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Poly(ionic liquid)s with Dicationic Pendants as Gas Separation MembranesRavula, S.⋅O?harra, K.E.⋅Watson, K.A. and Bara, J.E.Membranes, vol. 12.
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Properties of Imidazolium Ionic Liquids with Glycerol-Derived Functional GroupsQian, S.⋅Leah, J.D.⋅Chatterjee, S.⋅Soyemi, A.⋅Szilvási, T. and Bara, J.E.Journal of Chemical and Engineering Data, vol. 67, pp. 1905-1914.
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Spirobisindane-Containing Imidazolium Polyimide Ionene: Structural Design and Gas Separation Performance of "Ionic PIMs"Kammakakam, I.⋅O’Harra, K.E.⋅Bara, J.E. and Jackson, E.M.Macromolecules, vol. 55, pp. 4790-4802.
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Synthesis and properties of symmetric glycerol-derived 1,2,3-triethers and 1,3-diether-2-ketones for CO2 absorptionQian, S.⋅Liu, X.⋅Turner, C.H. and Bara, J.E.Chemical Engineering Science, vol. 248.
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Tuning conformational structures of imidazolium ionenes with 1-ethyl-3-methylimidazolium ionic liquid solventsMaurya, M.⋅Sappidi, P.⋅Bara, J.E. and Turner, C.H.Chemical Engineering Science, vol. 251.
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2021
Carbon Capture, Usage, and StorageBara, J.E.(pp. 351-360)
Commodity Chemicals and Fuels from Biomass: Thermodynamic Properties of Levoglucosan Derivatives. Industrial & Engineering Chemistry Research
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Design and gas separation performance of imidazolium poly(Ils) containing multivalent imidazolium fillers and crosslinking agentsO?Harra, K.E.⋅Devriese, E.M.⋅Turflinger, E.M.⋅Noll, D.M. and Bara, J.E.Polymers, vol. 13.
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Designing Ionic Liquid-Derived Polymer Composites from Poly(Ionic Liquid)–Ionene Semi-interpenetrating NetworksO’Harra, Kathryn E.⋅Timmermann, George M.⋅Bara, Jason E. and Miller, Kevin M.ACS Applied Polymer Materials, vol. 3, pp. 1995–2004.
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Emerging iongel materials towards applications in energy and bioelectronicsTomé, Liliana C⋅Tomé, Liliana C.⋅Porcarelli, Luca⋅Porcarelli, Luca⋅Bara, Jason E⋅Bara, Jason E.⋅Forsyth, Maria⋅Forsyth, Maria⋅Mecerreyes, David and Mecerreyes, DavidMaterials Horizons, vol. 8, pp. 3239–3265.
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High-salinity brine desalination with amine-based temperature swing solvent extraction: A molecular dynamics studyBarbosa, G.D.⋅Liu, X.⋅Bara, J.E.⋅Weinman, S.T. and Turner, C.H.Journal of Molecular Liquids, vol. 341.
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How Do Ionic Liquids "fold" Ionenes? Computational and Experimental Analysis of Imidazolium Polymers Based on Ether and Alkyl Chain Variations Dissolved in an Ionic LiquidSappidi, P.⋅Liu, X.⋅O’Harra, K.E.⋅Bara, J.E. and Turner, C.H.Macromolecules, vol. 54, pp. 1611-1622.
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