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Giant Micelles : Properties and Applications

By: (Edited by) Eric W. Kaler , (Edited by) Raoul Zana

Manufacture on Demand

Ksh 11,750.00

Format: Paperback or Softback

ISBN-10: 0367403552

ISBN-13: 9780367403553

Publisher: Taylor & Francis Ltd

Imprint: CRC Press

Country of Manufacture: GB

Country of Publication: GB

Publication Date: Sep 19th, 2019

Print length: 576 Pages

Weight: 771 grams

Product Classification: Colloid chemistry

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Enhanced with tables and figures, this text explores the giant micelles that occur in many types of surfactant solutions. It focuses on the theoretical aspects of their formation from different viewpoints, including molecular thermodynamic theory and computer simulations. It also examines their rheological behavior and addresses experimental findings from the application of transmission electron microscopy at cryogenic temperature, scattering methods, phase diagrams, linear and nonlinear rheology, and chemical relaxation. The text includes discussion of various applications, including energy production, drag reduction, cleansers, cosmetics, and personal care products.

The co-evolution of a strong theoretical framework alongside application of a range of sophisticated experimental tools engendered rapid advancement in the study of “giant micelles.” Beginning with Anacker and Debye’s 1951 experimental study of elongated micelles by light scattering and their subsequent theoretical inference that the thermodynamics of these structures would have to reflect an opposing force model, theory and experiment have progressed hand in hand. This progress, along with growing interest in the practical and industrial applications of these structures in cleansers, cosmetics, pharmaceuticals, and energy production, demands a comprehensive, single-source reference to the current state-of-the-science.
Drawing on the expertise of internationally known scientists, Giant Micelles: Properties and Applications summarizes the range of behaviors encountered in solutions of micelles and their applications in industrial processes. The book introduces theoretical aspects of the rheological behavior and formation of giant micelles from different viewpoints including molecular-level thermodynamic theory and computer simulations. It continues by focusing on the results of a variety of experimental studies using methods such as cryo-transmission electron microscopy, scattering techniques, phase diagrams, linear and non-linear rheology, and chemical relaxation. Illustrating the properties of giant micelles on solid surfaces, the book also considers systems of smart micelles that respond to external stimuli by a change of shape. The authors describe giant micelles formed from amphiphilic block copolymers as well as non-covalent polymers that exhibit similar rheological behavior to giant micelles. Finally, the chapters address current and emerging applications of giant micelles in oil and gas production, drag reduction, drug-delivery formulations, and personal care products such as shampoo.
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