Dynamics of Surfactant Self-Assemblies

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Age Group_Uncategorized
Age Group_Uncategorized
Aggregation Number
alkyl
american
American Chemical Society
amphiphilic molecules
automatic-update
B01=Raoul Zana
Block Copolymer
Block Copolymer Micelles
Category1=Non-Fiction
Category=PNRX
chain
chemical
chemical reaction kinetics
Chemical Relaxation
colloidal chemistry
concentration
COP=United Kingdom
Delivery_Delivery within 10-20 working days
Disklike Micelles
Elongated Micelles
eq_bestseller
eq_isMigrated=2
eq_nobargain
eq_non-fiction
eq_science
Exit Rate Constant
Fatty Acid
Giesekus Model
Insoluble Block
interface rheology
L3 Phase
Lamellar Phase
Language_English
liquid crystal phases
micellar
Micellar Kinetics
Micellar Solutions
Micelle Formation
Microemulsion Droplets
PA=Available
Price_€50 to €100
PS=Active
relaxation
Relaxation Amplitudes
Reverse Micelles
society
softlaunch
solutions
surfactant adsorption
Surfactant Concentration
Surfactant Exchange
Surfactant Self-assemblies
surfactant solution dynamics research
time
Viscoelastic Surfactant Solutions
Winsor III
Wormlike Micelles

Product details

  • ISBN 9780367393120
  • Weight: 710g
  • Dimensions: 152 x 229mm
  • Publication Date: 19 Sep 2019
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: GB
  • Product Form: Paperback
  • Language: English
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Dynamics of Surfactant Self-Assemblies explains the dynamics of micellar equilibria, tracking surfactant exchange, and micelle formation/breakdown processes. Highlighting the structural similarities of amphiphilic block copolymers to surfactants, this volume elucidates the dynamics of more complex self-assemblies that surfactants and amphiphilic block copolymers form in solutions. The book first discusses self-assembling processes taking place in aqueous surfactant solutions and the dynamic character of surfactant self-assemblies. The next chapter reviews methods that permit the study of the dynamics of self-assemblies. The dynamics of micelles of surfactants and block copolymers, solubilized systems, microemulsions, vesicles, and lyotropic liquid crystals/mesophases are reviewed successively. The authors point out the similarities and differences in the behavior of these different self-assemblies. Much emphasis is put on the processes of surfactant exchange and of micelle formation/breakdown that determine the surfactant residence time in micelles, and the micelle lifetime. The last three chapters cover topics for which the dynamics of surfactant self-assemblies can be important for a better understanding of observed behaviors: dynamics of surfactant adsorption on surfaces, rheology of viscoelastic surfactant solutions, and kinetics of chemical reactions performed in surfactant self-assemblies used as microreactors. Dynamics of Surfactant Self-Assemblies offers a unique and comprehensive review of the literature that exists on the dynamics of the various surfactant self-assemblies and a unified perspective on this topic. It provides researchers with a useful guide for the dynamics of the surfactant systems that they wish to investigate.
Raoul Zana