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Articles

Modulation of the aggregation behaviour and physicochemical properties of 1-dodecyl-3-methylimidazolium bromide in aqueous solutions by β-CD

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Pages 718-729 | Received 11 Jul 2017, Accepted 10 Sep 2017, Published online: 20 Sep 2017

References

  • Hallett JP, Welton T. Room-temperature ionic liquids: solvents for synthesis and catalysis. Chem Rev. 2011;111:3508–3576.
  • King AWT, Asikkala J, Mutikainen I, et al. Distillable acid-base conjugate ionic liquids for cellulose dissolution and processing. Angew Chem Int Ed. 2011;50:6301–6305.
  • Łuczak J, Hupka J, Thöming J, et al. Self-organization of imidazolium ionic liquids in aqueous solution. Colloid Surf A. 2008;329:125–133.
  • Wang HY, Wang JJ, Zhang SB, et al. Structural effects of anions and cations on the aggregation behavior of ionic liquids in aqueous solutions. J Phys Chem B. 2008;112:16682–16689.
  • Zhao Y, Gao SJ, Wang JJ, et al. Aggregation of Ionic Liquids [Cnmim]Br (n = 4, 6, 8, 10, 12) in D2O: A NMR Study. J Phys Chem B. 2008;112:2031–2039.
  • Wang JJ, Wang HY, Zhang SL, et al. Conductivities, volumes, fluorescence, and aggregation behavior of ionic liquids [C4mim][BF4] and [Cnmim]Br (n = 4, 6, 8, 10, 12) in aqueous solutions. J Phys Chem B. 2007;111:6181–6188.
  • Wang JJ, Zhang LM, Wang HY, et al. Aggregation behavior modulation of 1-Dodecyl-3-methylimidazolium bromide by organic solvents in aqueous solution. J Phys Chem B. 2011;115:4955–4962.
  • Shen YF, Zhang YJ, Kuehner D, et al. Ion-responsive behavior of ionic-liquid surfactant aggregates with applications in controlled release and emulsification. ChemPhysChem. 2008;9:2198–2202.
  • Ahlers M, Müller W, Reichert A, et al. Specific interactions of proteins with functional lipid monolayers-ways of simulating biomembrane processes. Angew Chem Int Ed. 1990;29:1269–1285.
  • He YF, Chen QD, Xu C, et al. Interaction between ionic liquids and β-cyclodextrin: a discussion of association pattern. J Phys Chem B. 2009;113:231–238.
  • Zhang JJ, Shen XH. multiple equilibria interaction pattern between the ionic liquids CnmimPF6 and β-cyclodextrin in aqueous solutions. J Phys Chem B. 2011;115:11852–11861.
  • Zhang J, Shi J, Shen X. Further understanding of the multiple equilibria interaction pattern between ionic liquid and β-cyclodextrin. J Incl Macrocyl Chem. 2014;79:319–327.
  • Zhang JJ, Shen XH. Temperature-induced reversible transition between vesicle and supramolecular hydrogel in the aqueous ionic liquid-β-cyclodextrin system. J Phys Chem B. 2013;117:1451–1457.
  • Gao YA, Li ZH, Du JM, et al. Preparation and characterization of inclusion complxes of beta-cyclodextrin with ionic liquid. Chem Eur J. 2005;11:5875–5880.
  • Li N, Liu J, Zhao XY, et al. Complex formation of ionic liquid surfactant and β-cyclodextrin. Colloids Surf A. 2007;292:196–201.
  • Gao YA, Zhao XY, Dong B, et al. Inclusion complexes of β-cyclodextrin with ionic liquid surfactants. J Phys Chem B. 2006;110:8576–8581.
  • Francois Y, Varenne A, Sirieix-Plenet J, et al. Determination of aqueous inclusion complexation constants and stoichiometry of alkyl(methyl)-methylimidazolium-based ionic liquid cations and neutral cyclodextrins by affinity capillary electrophoresis. J Sep Sci. 2007;30:751–760.
  • Amajjahe S, Choi S, Munteanu M, et al. Pseudopolyanions based on Poly(NIPAAM-co-β-Cyclodextrin Methacrylate) and ionic liquids. Angew Chem Int Ed. 2008;47:3435–3437.
  • Holbrey JD, Seddon KR. The phase behaviour of 1-alkyl-3-methylimidazolium tetrafluoroborates; ionic liquids and ionic liquid crystals. J Chem Soc Dalton Trans. 1999;13:2133–2140.
  • Junquera E, Tardajos G, Aicart E. Effect of the presence of .beta.-cyclodextrin on the micellization process of sodium dodecyl sulfate or sodium perfluorooctanoate in water. Langmuir. 1993;9:1213–1219.
  • Bakshi MS. Micelle formation by sodium dodecyl sulfate in water-additive systems. Bull Chem Soc Jpn. 1996;69:2723–2729.
  • Bakshi MS, Kohli P, Kaur G. Micelle formation by anionic and cationic surfactants in 18-Crown-6 Ether+ β-cyclodextrin + water systems. Bull Chem Soc Jpn. 1998;71:1539–1542.
  • Okubo T, Kitano H, Ise N. Conductometric studies on association of cyclodextrin with colloidal electrolytes. J Phys Chem. 1976;80:2661–2664.
  • Gutiérrez-Pichel M, Taboada P, Varela LM, et al. Solute and solvent structure effects on the volume and compressibilities of some colloidal penicillins in aqueous solution. Langmuir. 2002;18:3650–3654.
  • González-Gaitano G, Crespo A, Compostizo A, et al. Study at a molecular level of the transfer process of a cationic surfactant from water to β-Cyclodextrin. J Phys Chem B. 1997;101:4413–4421.
  • Lisi RD, Ostiguy C, Perron G, et al. Desnoyers, Complete thermodynamic properties of nonyl- and decyltrimethylammonium bromides in water. J Colloid Interface Sci. 1979;71:147–166.
  • Lindner K, Saenger W. Crystal and molecular structure of cyclohepta-amylose dodecahydrate. Carbohydrate Res. 1982;99:103–115.
  • Zabel V, Saenger W, Mason SA. Topography of cyclodextrin inclusion complexes. Part 23. Neutron diffraction study of the hydrogen bonding in .beta.-cyclodextrin undecahydrate at 120 K: from dynamic flip-flops to static homodromic chains. J Am Chem Soc. 1986;108:3664–3673.
  • Gonzalez-Gaitano G, Crespo A, Tardajos G. Thermodynamic investigation (Volume and Compressibility) of the systems β-Cyclodextrin + n-Alkyltrimethylammonium Bromides + Water. J Phys Chem B. 2000;104:1869–1879.
  • Feltcher KA, Pandey S. Solvatochromic probe behavior within ternary room-temperature ionic liquid 1-Butyl-3-methylimidazolium Hexafluorophosphate + Ethanol + water solutions. J Phys Chem B. 2003;107:13532–13539.
  • Behera K, Pandey S. Ionic liquid induced changes in the properties of aqueous zwitterionic surfactant solution. Langmuir. 2008;24:6462–6469.
  • Rosen MJ. Surfactants and interfacial phenomena. 2nd ed. New York: Wiley; 1989.
  • Inoue T, Ebina H, Dong B, et al. Electrical conductivity study on micelle formation of long-chain imidazolium ionic liquids in aqueous solution. J Colloid Interface Sci. 2007;314:236–241.

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