Conductometric and tensiometric studies on the mixed micellar systems of surface-active ionic liquid and cationic surfactants in aqueous medium

被引:56
|
作者
Ali, Anwar [1 ]
Farooq, Ummer [1 ]
Uzair, Sahar [1 ]
Patel, Rajan [2 ]
机构
[1] Jamia Millia Islamia, Dept Chem, New Delhi 110025, India
[2] Jamia Millia Islamia, Ctr Interdisciplinary Res Basic Sci, New Delhi 110025, India
关键词
Conductivity; Surface tension; Cationic surfactants; Surface active-ionic liquid; Mixed system; Interactions; SODIUM DODECYL-SULFATE; CETYLPYRIDINIUM CHLORIDE; NONIONIC SURFACTANTS; BINARY-MIXTURES; AMITRIPTYLINE HYDROCHLORIDE; PHYSICOCHEMICAL PROPERTIES; MICELLIZATION BEHAVIOR; SELF-AGGREGATION; TRITON X-100; CHAIN-LENGTH;
D O I
10.1016/j.molliq.2016.08.082
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Physicochemical properties of aqueous surfactant solutions can be suitably modified by the addition of room temperature surface-active ionic liquids (SAILs). As green solvents, these SAILS are used as the ideal additives for modifying the aqueous surfactant properties. Such mixed surfactant + SAIL systems in aqueous solutions find enormous applications in several technological fields. The changes in the micellar behavior of cationic surfactants cetylpyridinium chloride (CPC) and cetylpyridinium bromide (CPB) have been investigated in the presence of SAIL 1-decyl-3-methylimidazolium chloride [C(10)mim][Cl] employing conductometric and tensiometric methods. Micellar and interfacial parameters such as critical micelle concentration, cmc micellar mole fraction, X-1 of component 1 (CPC/CPB), micellar interaction parameter, beta, activity coefficients f(1) and f(2) of component 1 and component 2 (SAIL) in the mixed micelles, excess Gibbs free energy of micellization, Delta G(ex)(0), standard Gibbs free energy, Delta G(mic)(0), enthalpy, Delta H-mic(0), and entropy, Delta S-mic(0) of micellization, surface excess concentration, F. minimum surface area per molecule, Amin, and standard Gibbs free energy of adsorption Delta G(ad)(0) at the interface were evaluated. In addition, packing parameters of amphiphiles in the micelles, P, volume contribution of the hydrophobic chain, v, and its effective length, l(C) have also been evaluated for the pure and mixed systems. The interactions between CPC/CPB and SAIL in the mixtures are found to be non-ideal and synergistic, and that mixed micelles are richer in CPC/CPB monomers. Of the several interactive interactions, hydrophobic interaction seems to be dominant between the components of the mixed systems. Adsorption of SAIL molecules at air solution interface is found to be richer in SAIL than CPC/CPB molecules, which is also supported by the higher negative Delta G(ad)(0) values than Delta G(mic)(0) values. The micelles/ mixed micelles formed have spherical geometry. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:589 / 602
页数:14
相关论文
共 50 条
  • [31] Extraction of aromatic compounds by water-rich aqueous two-phase system comprising surface-active ionic liquid and cationic surfactant
    Wang, Bingying
    Zhang, Lingling
    Lu, Xiaoxing
    JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2025, 13 (01):
  • [32] MECHANISM OF ACTION OF CATIONIC SURFACE-ACTIVE MATERIALS (SURFACTANTS) IN ORGANIC REAGENT METAL-ION SURFACTANT SYSTEMS
    SAVVIN, SB
    CHERNOVA, RK
    BELOUSOVA, VV
    SUKHOVA, LK
    SHTYKOV, SN
    JOURNAL OF ANALYTICAL CHEMISTRY OF THE USSR, 1978, 33 (08): : 1152 - 1158
  • [33] Drug-surfactant comicellization: Propranolol hydrochloride-surface active ionic liquid systems in aqueous medium
    Saha, Urmila
    Banerjee, Arnab
    Das, Bijan
    JOURNAL OF MOLECULAR LIQUIDS, 2020, 309
  • [34] Kinetics of the bubble attachment and quartz flotation in mixed solutions of cationic and non-ionic surface-active substances
    Zawala, J.
    Karaguzel, C.
    Wiertel, A.
    Sahbaz, O.
    Malysa, K.
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2017, 523 : 118 - 126
  • [35] A formulation based on a cationic surface-active ionic liquid and an anionic surfactant for enhanced oil recovery at a carbonate reservoir
    Somoza, Alba
    Garcia-Mayoral, M. Flor
    Soto, Ana
    FUEL, 2023, 346
  • [36] Amphiphilic copolymers and surface active ionic liquid systems in aqueous media - Surface active and aggregation characteristics
    Singh, D. K.
    Sastry, N. V.
    Trivedi, P. A.
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2017, 524 : 111 - 126
  • [37] Analyzing the modulations induced in the mixed micellar behavior of 1-alkyl-3-butylimidazolium based surface-active ionic liquids with an antibiotic drug in aqueous media
    Kaur, Gagandeep
    Kaur, Ramanjeet
    Kaur, Jasmeet
    Singh, Harleen
    Kumar, Harsh
    Sharma, Pooja
    TENSIDE SURFACTANTS DETERGENTS, 2023, 60 (04) : 338 - 355
  • [38] Micellar and interfacial properties of amphiphilic drug-non-ionic surfactants mixed systems: Surface tension, fluorescence and UV-vis studies
    Azum, Naved
    Rub, Malik Abdul
    Asiri, Abdullah M.
    Bawazeer, Wafa Abubaker
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2017, 522 : 183 - 192
  • [39] TEMPERATURE DEPENDENCES OF MICELLAR MOLECULAR-WEIGHT AND RADIUS OF NON-IONIC SURFACE-ACTIVE AGENT IN THE AQUEOUS-SOLUTION
    FUJIMATSU, H
    TAKAGI, K
    MATSUDA, H
    KUROIWA, S
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1983, 94 (01) : 237 - 242
  • [40] Experimental and Theoretical Approach to Mixed Systems of Non-Ionic Cremophor EL and Cationic Gemini Surfactants in Aqueous Solution
    Naqvi, Andleeb Z.
    Noori, Sahar
    Kabir-ud-Din
    ZEITSCHRIFT FUR PHYSIKALISCHE CHEMIE-INTERNATIONAL JOURNAL OF RESEARCH IN PHYSICAL CHEMISTRY & CHEMICAL PHYSICS, 2015, 229 (03): : 395 - 415