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Monitoring an ionic liquid synthesis with in-situ IR-spectroscopy - The intricacy of solvent effects Ohligschlager A, Gertig C, Coenen D, Brosch S, Firaha D, Leonhar K, Liauw MA Chemical Engineering Journal, 368, 649, 2019 |
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On the role of BmimPF(6) and P/F- containing additives in the sol-gel synthesis of TiO2 photocatalysts with enhanced activity in the gas phase degradation of methyl ethyl ketone Yan YG, Keller V, Keller N Applied Catalysis B: Environmental, 234, 56, 2018 |
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Polymeric ionic liquids (PILs) for CO2 capture Sadeghpour M, Yusoff R, Aroua MK Reviews in Chemical Engineering, 33(2), 183, 2017 |
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Kinetics and polarity effects in the synthesis of the ionic liquid, 1-hexyl-3-methyl-imidazolium bromide, using compressed CO2 Nwosu SO, Scheicher JC, Scurto AM Journal of Supercritical Fluids, 96, 171, 2015 |
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Synthesis and thermodynamic properties of a novel pyridinium-based asymmetrical gemini ionic liquid Yang X, Wang J, Zou W, Wu J Korean Journal of Chemical Engineering, 32(12), 2369, 2015 |
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Intelligent Prediction of CO2 Capture in Propyl Amine Methyl Imidazole Alanine Ionic Liquid: An Artificial Neural Network Model Mirarab M, Sharifi M, Behzadi B, Ghayyem MA Separation Science and Technology, 50(1), 26, 2015 |
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Modeling imidazolium-based ionic liquids with ePC-SAFT. Part II. Application to H2S and synthesis-gas components Ji XY, Held C, Sadowski G Fluid Phase Equilibria, 363, 59, 2014 |
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Vapor-liquid equilibrium in the production of the ionic liquid, 1-hexyl-3-methylimidazolium bromide ([HMIm][Br]), in acetone Minnick DL, Scurto AM Fluid Phase Equilibria, 365, 11, 2014 |
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An imidazolium-based polymerized ionic liquid via novel synthetic strategy as polymer electrolytes for lithium ion batteries Yin K, Zhang ZX, Yang L, Hirano SI Journal of Power Sources, 258, 150, 2014 |
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Oxidative desulfurization of simulated gasoline catalyzed by acetic acid-based ionic liquids at room temperature Liang WD, Zhang S, Li HF, Zhang GD Fuel Processing Technology, 109, 27, 2013 |