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May 7, 2018
Published Online: 2018-05-07
Published in Print: 2018-05-14
© 2018, Carl Hanser Publisher, Munich
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- Physical Chemistry
- Morphologic Properties, Texture Transformations and Optical Refracting Properties: Aqueous Bicomponent Amphiphilic Lyotropic Systems
- Influence of Cationic Surfactant and Temperature on the Growth of ZnO Nanoparticles
- Effect of Surfactants on the Belousov-Zhabotinsky Reaction with Ninhydrin as Organic Substrate
- Solubility of Some Mineral Salts in Polyethylene Glycol and Related Surfactants
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- Influence of the Hydro/Fluorocarbon Chain Length on CMC and HLB of Surface-Active Nonionic Surfactants Containing Polyethylene Glycol Groups
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Articles in the same Issue
- Contents/Inhalt
- Contents
- Physical Chemistry
- Morphologic Properties, Texture Transformations and Optical Refracting Properties: Aqueous Bicomponent Amphiphilic Lyotropic Systems
- Influence of Cationic Surfactant and Temperature on the Growth of ZnO Nanoparticles
- Effect of Surfactants on the Belousov-Zhabotinsky Reaction with Ninhydrin as Organic Substrate
- Solubility of Some Mineral Salts in Polyethylene Glycol and Related Surfactants
- Novel Surfactants
- Solubility Enhancement of Polycyclic Aromatic Hydrocarbons by an Eco-Friendly Ester-Linked Gemini Surfactant and its Mixtures with Conventional Surfactants
- Novel Carbohydrate Based Non-Ionic Gemini Surfactants with Flexible Spacer as Reverse Micellar Systems for Encapsulation of D- and L-Enantiomers of Some Aromatic α-Amino Acids in n-Hexane
- Synthesis and Characterization of Photosensitive Ionic Liquid Surfactant 4-Butylazobenzene-4′-(Oxyethyl)Methylimidazolium with Br− and BF4− Counterions
- Synthesis
- Improved Synthesis and Properties of N-(3-octadecylamino-2-hydroxyl) Propyl Trimethyl Ammonium Chloride
- Influence of the Hydro/Fluorocarbon Chain Length on CMC and HLB of Surface-Active Nonionic Surfactants Containing Polyethylene Glycol Groups
- Application
- Ultra-Low Interfacial Tension of a Surfactant under a Wide Range of Temperature and Salinity Conditions for Chemical Enhanced Oil Recovery