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Eastoe J.
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Ionic Liquid-in-Oil Microemulsions
Polymerization of Cationic Surfactant Phases
Properties of a Stilbene-Containing GeminiPhotosurfactant: Light-Triggered Changes in SurfaceTension and Aggregation
What Is So Special about Aerosol-OT? Part IV.Phenyl-Tipped Surfactants
Electron Density Matching as a Guide to Surfactant Design
Small-Angle Neutron Scattering Study of Microemulsion−PolymerMixtures in the Protein Limit
Phosphate Surfactants for Water-in-CO2Microemulsions
Controlling Aggregation of Nonionic Surfactants Using Mixed GlycolMedia
Photorecovery of Nanoparticles from an Organic Solvent
Photoresponsive Microemulsions
Microemulsion-Based Synthesis of CeO2 Powders withHigh Surface Area and High-Temperature Stabilities
Fluorosurfactants at Structural Extremes: Adsorption andAggregation
Fluorinated Nonionic Surfactants Bearing Either CF3− orH−CF2− Terminal Groups: Adsorption at the Surface ofAqueous Solutions
Photoresponsive Surfactants in Microgel Dispersions
Photodestructible Vesicles
The Remarkable “Flip−Flop” Self-Assembly of a Diblock Copolymer inAqueous Solution
What Is So Special about Aerosol-OT? 2. MicroemulsionSystems
What Is So Special about Aerosol-OT?Part IIIGlutaconate versus Sulfosuccinate Headgroupsand Oil−Water Interfacial Tensions
Measurement of the Dynamic Surface Excess ofthe Nonionic Surfactant C8E4OMe by NeutronReflection and Ellipsometry
UV Causes Dramatic Changes in Aggregation withMixtures of Photoactive and Inert Surfactants
Hybrid Fluorocarbon−Hydrocarbon CO2-philicSurfactants. 2. Formation and Properties of Water-in-CO2Microemulsions
Surfactants for CO2
Formation of Surfactant-Stabilized Silica Organosols
Interfacial Compositions and Phase Structures in MixedSurfactant Microemulsions
What Is So Special about Aerosol-OT? 1. Aqueous Systems
Formation of BaSO4 Nanoparticles inMicroemulsions with PolymerizedSurfactant Shells
Dynamic Surface Excesses of Fluorocarbon Surfactants
Surfactant-Free “Emulsions” Generated by Freeze−Thaw
Photoinduced Phase Separation
Effects of Fluorocarbon Surfactant Chain Structure onStability of Water-in-Carbon Dioxide Microemulsions.Links between Aqueous Surface Tension andMicroemulsion Stability
Properties of Mixed Alcohol−Zwitterionic Surfactant Filmsin Quaternary Water-in-Oil Microemulsions
pH Switching for the Selective Extraction of Metal Ionsinto Supercritical CO2
Micellization of Hydrocarbon Surfactants inSupercritical Carbon Dioxide
Control over Phase Curvature UsingMixtures of Polymerizable Surfactants
Light-Sensitive Microemulsions
Compositions of Mixed Surfactant Layers inMicroemulsions Determined by Small-Angle NeutronScattering
Hybrid Fluorocarbon−Hydrocarbon CO2-philicSurfactants. 1. Synthesis and Properties of AqueousSolutions
Effects of Hydrophobic Chain Structure on Adsorption ofFluorocarbon Surfactants with either CF3− or H−CF2−Terminal Groups
Adsorption of Ionic Surfactants at the Air−SolutionInterface
Water in Carbon Dioxide Macroemulsions andMiniemulsions with a Hydrocarbon Surfactant
Concentrated Polymerized Cationic Surfactant Phases
Microemulsion Formation in 1,1,1,2-Tetrafluoroethane(R134a)
Determination of the Dynamic Surface Excess of aHomologous Series of Cationic Surfactants by Ellipsometry
Adsorption of Ionic Surfactants at an ExpandingAir−Water Interface
Unexpected Adsorption Behavior of Nonionic Surfactants from GlycolSolvents
Nanoemulsions Prepared by a Two-Step Low-Energy Process
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