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03960nam a22005415i 4500 |
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20151204144324.0 |
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150123s2015 gw | s |||| 0|eng d |
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|a 9783662459508
|9 978-3-662-45950-8
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|a 10.1007/978-3-662-45950-8
|2 doi
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|a SCI013050
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|a 541
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|a Feng, Yujun.
|e author.
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|a Smart Wormlike Micelles
|h [electronic resource] :
|b Design, Characteristics and Applications /
|c by Yujun Feng, Zonglin Chu, Cécile A. Dreiss.
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|a Berlin, Heidelberg :
|b Springer Berlin Heidelberg :
|b Imprint: Springer,
|c 2015.
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|a XV, 91 p. 42 illus., 37 illus. in color.
|b online resource.
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|a text
|b txt
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|a computer
|b c
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|a online resource
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|a text file
|b PDF
|2 rda
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|a SpringerBriefs in Molecular Science,
|x 2191-5407
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|a Introduction -- pH-responsive wormlike micelles -- Thermo-responsive wormlike micelles -- UV/vis-responsive wormlike micelles -- CO2-switchable wormlike micelles -- Other types of wormlike micelles -- Applications of smart wormlike micelles.
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|a This Brief provides an up-to-date overview of smart surfactants and describes a broad spectrum of triggers that induce the formation of wormlike micelles or reversibly tune the morphology of surfactant aggregates from wormlike micelles to another state, or vice versa. Combining the fields of chemistry, physics, polymer science, and nanotechnology, its primary focus is on the design, formulation, and processing of intelligent viscoelastic surfactant solutions, covering the scientific principles governing responsiveness to one or more particular triggers, down to the end-use-driven functions. The first chapter explains why and how surfactants self-assemble into viscoelastic wormlike micellar solutions reminiscent of polymer solutions, while the following chapters show how the response to a given trigger translates into macroscopic rheological changes, including temperature, light, pH, CO2, redox, hydrocarbon, etc. The last chapter demonstrates the applications of these viscoelastic assemblies in oil and gas production, drag reduction, biomaterials, cleaning processes, electrorheological and photorheological fluids. Comments and perspectives are provided at the end to conclude this Brief. This Brief is aimed at chemists, physicists, chemical engineers and nano-scientists who are involved in self-assemblies and applications of surfactants, as well as graduates in physical chemistry. Yujun Feng, Ph.D., is a professor at the State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute of Sichuan University, Chengdu, Sichuan Province, P. R. China. Zonglin Chu, Ph.D., is a post-doctoral fellow working at the Physical Chemistry Institute, University of Zürich, Switzerland. Cécile A. Dreiss, Ph.D., is a senior lecturer at the Institute of Pharmaceutical Science, King’s College London, UK.
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|a Chemistry.
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|a Physical chemistry.
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|a Polymers.
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|a Amorphous substances.
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|a Complex fluids.
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|a Nanotechnology.
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|a Chemistry.
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|a Physical Chemistry.
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|a Soft and Granular Matter, Complex Fluids and Microfluidics.
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|a Polymer Sciences.
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|a Nanotechnology.
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|a Chu, Zonglin.
|e author.
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|a Dreiss, Cécile A.
|e author.
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|a SpringerLink (Online service)
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|t Springer eBooks
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|i Printed edition:
|z 9783662459492
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|a SpringerBriefs in Molecular Science,
|x 2191-5407
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|u http://dx.doi.org/10.1007/978-3-662-45950-8
|z Full Text via HEAL-Link
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|a ZDB-2-CMS
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|a Chemistry and Materials Science (Springer-11644)
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