Responsive gels : volume transitions

Author(s)

Bibliographic Information

Responsive gels : volume transitions

editor, K. Dušek ; with contributions by M. Ilavský ... [et al.]

(Advances in polymer science, 109, 110)

Springer, c1993

  • 1 : hard, gw
  • 1 : pbk, gw
  • 1 : us
  • 2 : hard, gw
  • 2 : pbk, gw
  • 2 : us

Available at  / 28 libraries

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Note

2 : with contributions by J.H. Burban ... [et al.]

Includes bibliographical references and indexes

Description and Table of Contents

Volume

1 : hard, gw ISBN 9783540567912

Description

Toyiochi Tanaka, Mitsuhiro Shibayama, "Phase Transitions and related Phenomena of Polymer Gels", Akira Onuki "Theory of Phase Transition in Polymer Gels", Alexei Khokhlov, Sergei Starodybtzev, Valentina Vasilevskaya "Conformational Transitions in Polymer Gels: Theory and Experiment", Michal Ilavsky " Effect on Phase Transition on Swellingand Mechanical Behavior of Synthetic Hydrogels", Shozaburo Saito , M. Konno, H. Inomata "Volume Phase Transition of N-Alkylacrylamide Gels", Ronald Siegel "Hydrophobic Weak Polyelectrolyte Gels: Studies of Swelling Equilibria and Kinetics".

Table of Contents

Volume phase transition and related phenomena of polymer gels.- Theory of phase transition in polymer gels.- Conformational transitions in polymer gels: Theory and experiment.- Effect of phase transition on swelling and mechanical behavior of synthetic hydrogels.- Volume phase transition of N-alkylacrylamide gels.- Hydrophobic weak polyelectrolyte gels: Studies of swelling equilibria and kinetics.
Volume

2 : hard, gw ISBN 9783540569701

Description

This collection of papers on the latest developments in polymer research includes discussion of hydrogels as separation agents, polymer gel phase transition in condensation, the molecular design of temperature-responsive polymers as intelligent materials and friction between polymer networks.

Table of Contents

Coexistence of phases and the nature of first-order phase transition in poly-N-isopropylacrylamide gels.- Friction between polymer networks of gels and solvent.- Stimuli-responsive poly(N-isopropylacrylamide). Photo- and chemical-induced phase transitions.- Hydrogels as separation agents.- Synthesis, equilibrium swelling, kinetics, permeability and applications of environmentally responsive gels.- Polymer gel phase transition in condensation-decondensation of secretory products.- Novel applications for stimulus-sensitive polymer gels in the preparation of functional immobilized biocatalysts.- Molecular design of temperature-responsive polymers as intelligent materials.- Phase transition in gels of sub-millimeter size induced by interaction with stimuli.- An approach to artificial muscle using polymer gels formed by micro-phase separation.
Volume

1 : pbk, gw ISBN 9783662149355

Description

Toyiochi Tanaka, Mitsuhiro Shibayama, "Phase Transitions and related Phenomena of Polymer Gels", Akira Onuki "Theory of Phase Transition in Polymer Gels", Alexei Khokhlov, Sergei Starodybtzev, Valentina Vasilevskaya "Conformational Transitions in Polymer Gels: Theory and Experiment", Michal Ilavsky " Effect on Phase Transition on Swellingand Mechanical Behavior of Synthetic Hydrogels", Shozaburo Saito , M. Konno, H. Inomata "Volume Phase Transition of N-Alkylacrylamide Gels", Ronald Siegel "Hydrophobic Weak Polyelectrolyte Gels: Studies of Swelling Equilibria and Kinetics".

Table of Contents

Volume phase transition and related phenomena of polymer gels.- Theory of phase transition in polymer gels.- Conformational transitions in polymer gels: Theory and experiment.- Effect of phase transition on swelling and mechanical behavior of synthetic hydrogels.- Volume phase transition of N-alkylacrylamide gels.- Hydrophobic weak polyelectrolyte gels: Studies of swelling equilibria and kinetics.
Volume

2 : pbk, gw ISBN 9783662149379

Description

Shunsuke Hirotsu "Coexistence of Phases and the Nature of First-Order Transition in Poly-N-isopropylacrylamide Gels", Masayuki Tokita "Friction between Polymer Networks of Gels and Solvent", Masahiro Irie "Stimuli-Responsive Poly(N-isopropyl- acrylamide), Photo- and Chemicals-Induced Phases Transitions Edward Cussler, Karen Wang, John Burban"Hydrogels as Separation Agents", Stevin Gehrke "Synthesis, Equilibrium Swelling, Kinetics Permeability and Applications of Environmentally Responsive Gels", Pedro Verdugo "Polymer Gel Phase Transition in Condensation- Decondensation of Secretory Products", Etsuo Kokufuta "Novel Applications for Stimulus-Sensitive Polymer Gels in the Preparation of Functional Immobilized Biocatalysts", Teruo Okano "Molecular Design of Temperature-Responsive Polymers as Intelligent Materials", Atsushi Suzuki "Phase Transition in Gels of Sub-Millimeter Size Induced by Interaction with Stimuli", Makoto Suzuki, O. Hirasa "An Approach to Artificial Muscle by Polymer Gels due to Micro-Phase Separation".

Table of Contents

Coexistence of phases and the nature of first-order phase transition in poly-N-isopropylacrylamide gels.- Friction between polymer networks of gels and solvent.- Stimuli-responsive poly(N-isopropylacrylamide). Photo- and chemical-induced phase transitions.- Hydrogels as separation agents.- Synthesis, equilibrium swelling, kinetics, permeability and applications of environmentally responsive gels.- Polymer gel phase transition in condensation-decondensation of secretory products.- Novel applications for stimulus-sensitive polymer gels in the preparation of functional immobilized biocatalysts.- Molecular design of temperature-responsive polymers as intelligent materials.- Phase transition in gels of sub-millimeter size induced by interaction with stimuli.- An approach to artificial muscle using polymer gels formed by micro-phase separation.

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    Available at 30 libraries

Details

  • NCID
    BA21148830
  • ISBN
    • 3540567917
    • 9783662149355
    • 0387567917
    • 3540569707
    • 9783662149379
    • 0387569707
  • Country Code
    gw
  • Title Language Code
    eng
  • Text Language Code
    eng
  • Place of Publication
    Berlin ; Tokyo
  • Pages/Volumes
    2 v.
  • Size
    25 cm
  • Parent Bibliography ID
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