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Organogelsthermodynamics, structure,...
~
Guenet, Jean-Michel.
Organogelsthermodynamics, structure, solvent role, and properties /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Organogelsby Jean-Michel Guenet.
Reminder of title:
thermodynamics, structure, solvent role, and properties /
Author:
Guenet, Jean-Michel.
Published:
Cham :Springer International Publishing :2016.
Description:
xii, 122 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Polymer colloids.
Online resource:
http://dx.doi.org/10.1007/978-3-319-33178-2
ISBN:
9783319331782$q(electronic bk.)
Organogelsthermodynamics, structure, solvent role, and properties /
Guenet, Jean-Michel.
Organogels
thermodynamics, structure, solvent role, and properties /[electronic resource] :by Jean-Michel Guenet. - Cham :Springer International Publishing :2016. - xii, 122 p. :ill. (some col.), digital ;24 cm. - SpringerBriefs in materials,2192-1091. - SpringerBriefs in materials..
Preface -- Introduction -- Chapter 1: Gels: a definition -- Chapter 2: Thermodynamic and kinetic aspects -- Chapter 3: Molecular structure, Morphology -- Chapter 4: Solvent role, current approaches -- Chapter 5: Rheological aspects -- Chapter 6: Hybrid gels -- Chapter 7: Current and potential applications -- General Summary -- Index.
This book provides a physics-oriented introduction to organogels with a comparison to polymer thermoreversible gels whenever relevant. The past decade has seen the development of a wide variety of newly-synthesized molecules that can spontaneously self-assemble or crystallize from their organic or aqueous solutions to produce fibrillar networks, namely organogels, with potential applications in organic electronics, light harvesting, bio-imaging, non-linear optics, and the like. This compact volume presents a detailed outlook of these novel molecular systems with special emphasis upon their thermodynamics, morphology, molecular structure, and rheology. The definition of these complex systems is also tackled, as well as the role of the solvent. The text features numerous temperature-phase diagrams for a variety of organogels as well as illustrations of their structures at the microscopic, mesoscopic and macroscopic level. A review of some potential applications is provided including hybrid functional materials with polymers and with carbon nanotubes. Throughout, discussions of theoretical developments and experimental advances are written at a level suitable for beginning graduate students through practicing researchers.
ISBN: 9783319331782$q(electronic bk.)
Standard No.: 10.1007/978-3-319-33178-2doiSubjects--Topical Terms:
189056
Polymer colloids.
LC Class. No.: QD549.2.P64
Dewey Class. No.: 541.34513
Organogelsthermodynamics, structure, solvent role, and properties /
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Preface -- Introduction -- Chapter 1: Gels: a definition -- Chapter 2: Thermodynamic and kinetic aspects -- Chapter 3: Molecular structure, Morphology -- Chapter 4: Solvent role, current approaches -- Chapter 5: Rheological aspects -- Chapter 6: Hybrid gels -- Chapter 7: Current and potential applications -- General Summary -- Index.
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This book provides a physics-oriented introduction to organogels with a comparison to polymer thermoreversible gels whenever relevant. The past decade has seen the development of a wide variety of newly-synthesized molecules that can spontaneously self-assemble or crystallize from their organic or aqueous solutions to produce fibrillar networks, namely organogels, with potential applications in organic electronics, light harvesting, bio-imaging, non-linear optics, and the like. This compact volume presents a detailed outlook of these novel molecular systems with special emphasis upon their thermodynamics, morphology, molecular structure, and rheology. The definition of these complex systems is also tackled, as well as the role of the solvent. The text features numerous temperature-phase diagrams for a variety of organogels as well as illustrations of their structures at the microscopic, mesoscopic and macroscopic level. A review of some potential applications is provided including hybrid functional materials with polymers and with carbon nanotubes. Throughout, discussions of theoretical developments and experimental advances are written at a level suitable for beginning graduate students through practicing researchers.
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