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Titlebook: Surfactants in Solution; Volume 11 K. L. Mittal,D. O. Shah Book 1991 Springer Science+Business Media New York 1991 Biosensor.Langmuir.NMR.S

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On Polymer/Surfactant InteractionThe field of polymer/surfactant interaction is reviewed. A compilation of recent contributions, with special emphasis on phase studies and hydrophobic polymers, is included. Lastly, potential applications of polymer/surfactant interaction, with particular reference to the cosmetics area, are outlined.
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Droplet Size Distributions and Phase Equilibria with Ionic Microemulsionsependent interfacial free energy, the pressure difference between the droplets and the continuous medium, and the entropy of mixing of the spherical droplets with the medium. The equilibrium among droplets of various sizes is dealt with via a mass-action approach..The analysis has been worked out fo
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Micellar Rate Effects: What We Know and What We Think We Knowh micelles and water regarded as distinct reaction regions. Overall rate (and equilibrium) constants depend upon reactant concentrations in each pseudophase and the appropriate rate (or equilibrium) constants. Quantitative treatments fit observed variations of overall rate constants with concentrati
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Langmuir-Blodgett Films: Past, Present and Future applications and this active field is reviewed. After a brief historical discussion, a number of surface science techniques and examples are presented. These include infrared spectroscopy, waveguide Raman spectroscopy, x-ray photoelectron spectroscopy, near edge x-ray fine structure, scanning tunne
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From Planar BLMs to Biomembranes to Self-Assembling Lipid Bilayers: Building Blocks of Future Biosens paper, after a brief description of the BLM system, certain experiments in relation to biomembranes will be summarized. These will be followed by a description of a new BLM system based on self-assembling process of amphipathic molecules. In recent years, advances in microelectronics coupled with
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Molecular Dynamics Simulations of Model Surfactants and Micellesles have been studied via computer simulation. The static structure results are essentially independent of the intra- and intermolecular potential models and show that chain structure is the same in all environments except for single chains in model water. A computationally efficient “solvent field”
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Molecular Modelling of Micellar Solutionsory of phase behavior and phase separation of isotropic micellar solutions. The molecular model incorporates the effects of surfactant molecular architecture and solvent properties on the physical factors which control micelle formation and growth. The approach can predict whether the micelles that
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