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Double-stage Phase Separation in Dynamically Asymmetric Ternary Polymer Blends

Double-stage Phase Separation in Dynamically Asymmetric Ternary Polymer Blends PDF Author: Chen Kuang
Publisher:
ISBN:
Category : Polymers
Languages : en
Pages : 154

Book Description
Phase separation in complex fluids such as polymers has been the subject of several experimental and theoretical studies in recent years. Understanding the phase separation mechanisms and controlling morphological evolution are very important for designing various advanced materials with novel mechanical, optical, electrical, and transport properties. In polymer blends, dynamic asymmetry is induced by a large difference in glass transition temperature. In this work, phase separation behavior of ternary blends of polystyrene/poly(vinyl methyl ether)/polyisoprene, PS/PVME/PI, and polystyrene/poly(vinyl methyl ether)/poly(ethyl methacrylate), PS/PVME/PEMA are investigated. Ternary blends of PS/PVME/PI and PS/PVME/PEMA exhibit complex phase separation behavior since PS and PVME have a lower critical solution temperature (LCST) behavior, while PI and PS (or PVME), PEMA and PS (or PVME) have upper critical solution temperature (UCST) behavior. 2D and 3D phase diagrams for these two ternary systems were plotted by both Flory-Huggins incompressible and regular solution compressible models. Casting the solutions of PS/PVME/PI and PS/PVME/PEMA blends form two phase-separated domains in most compositions: (i) PI-rich or PEMA rich, and (ii) PS/PVME-rich. Post-annealing of such samples leads to the second-stage phase separation due to unfavorable interaction of PS and PVME at temperatures about 100°C. Such behavior that is observed for the first time provides a new potential method for making different morphologies with the same system by changing annealing parameters and composition. Washing one polymer at a time using a selective solvent is used to study the morphology of ternary blends. Optical microscopy and scanning electron microscopy are used to study the kinetics and morphology of viscoelastic phase separation (VPS) in ternary blends.

Double-stage Phase Separation in Dynamically Asymmetric Ternary Polymer Blends

Double-stage Phase Separation in Dynamically Asymmetric Ternary Polymer Blends PDF Author: Chen Kuang
Publisher:
ISBN:
Category : Polymers
Languages : en
Pages : 154

Book Description
Phase separation in complex fluids such as polymers has been the subject of several experimental and theoretical studies in recent years. Understanding the phase separation mechanisms and controlling morphological evolution are very important for designing various advanced materials with novel mechanical, optical, electrical, and transport properties. In polymer blends, dynamic asymmetry is induced by a large difference in glass transition temperature. In this work, phase separation behavior of ternary blends of polystyrene/poly(vinyl methyl ether)/polyisoprene, PS/PVME/PI, and polystyrene/poly(vinyl methyl ether)/poly(ethyl methacrylate), PS/PVME/PEMA are investigated. Ternary blends of PS/PVME/PI and PS/PVME/PEMA exhibit complex phase separation behavior since PS and PVME have a lower critical solution temperature (LCST) behavior, while PI and PS (or PVME), PEMA and PS (or PVME) have upper critical solution temperature (UCST) behavior. 2D and 3D phase diagrams for these two ternary systems were plotted by both Flory-Huggins incompressible and regular solution compressible models. Casting the solutions of PS/PVME/PI and PS/PVME/PEMA blends form two phase-separated domains in most compositions: (i) PI-rich or PEMA rich, and (ii) PS/PVME-rich. Post-annealing of such samples leads to the second-stage phase separation due to unfavorable interaction of PS and PVME at temperatures about 100°C. Such behavior that is observed for the first time provides a new potential method for making different morphologies with the same system by changing annealing parameters and composition. Washing one polymer at a time using a selective solvent is used to study the morphology of ternary blends. Optical microscopy and scanning electron microscopy are used to study the kinetics and morphology of viscoelastic phase separation (VPS) in ternary blends.

Phase Behavior of Ternary Polymer Blends

Phase Behavior of Ternary Polymer Blends PDF Author: Brian McLean Habersberger
Publisher:
ISBN:
Category :
Languages : en
Pages : 265

Book Description


Multicomponent Diffusion and Phase Separation in Asymmetric Ternary Polymer Systems

Multicomponent Diffusion and Phase Separation in Asymmetric Ternary Polymer Systems PDF Author: Abdulrahman A. Alfarraj
Publisher: ProQuest
ISBN: 9780549286608
Category : Chemical and biological engineering
Languages : en
Pages : 214

Book Description


Initial Stages of Phase Separation in Polymer Blends Near the Limit of Metastability

Initial Stages of Phase Separation in Polymer Blends Near the Limit of Metastability PDF Author: Amy Adams Lefebvre
Publisher:
ISBN:
Category :
Languages : en
Pages : 332

Book Description


On the Evolution of Phase Separation in Polymer Blends

On the Evolution of Phase Separation in Polymer Blends PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 242

Book Description


Phase Separation in Polymer Blends

Phase Separation in Polymer Blends PDF Author: Dahn Katzen
Publisher:
ISBN:
Category :
Languages : en
Pages : 101

Book Description


Phase Separation of Polymer Blends

Phase Separation of Polymer Blends PDF Author: Weerasekara Mudiyanselage Gamini Seneviratne
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Characterization of Polymer Blends

Characterization of Polymer Blends PDF Author: Sabu Thomas
Publisher: John Wiley & Sons
ISBN: 3527331530
Category : Science
Languages : en
Pages : 972

Book Description
Filling the gap for a reference dedicated to the characterization of polymer blends and their micro and nano morphologies, this book provides comprehensive, systematic coverage in a one-stop, two-volume resource for all those working in the field. Leading researchers from industry and academia, as well as from government and private research institutions around the world summarize recent technical advances in chapters devoted to their individual contributions. In so doing, they examine a wide range of modern characterization techniques, from microscopy and spectroscopy to diffraction, thermal analysis, rheology, mechanical measurements and chromatography. These methods are compared with each other to assist in determining the best solution for both fundamental and applied problems, paying attention to the characterization of nanoscale miscibility and interfaces, both in blends involving copolymers and in immiscible blends. The thermodynamics, miscibility, phase separation, morphology and interfaces in polymer blends are also discussed in light of new insights involving the nanoscopic scale. Finally, the authors detail the processing-morphology-property relationships of polymer blends, as well as the influence of processing on the generation of micro and nano morphologies, and the dependence of these morphologies on the properties of blends. Hot topics such as compatibilization through nanoparticles, miscibility of new biopolymers and nanoscale investigations of interfaces in blends are also addressed. With its application-oriented approach, handpicked selection of topics and expert contributors, this is an outstanding survey for anyone involved in the field of polymer blends for advanced technologies.

Phase Separation in Polymer Blends and Its Effect on Mechanical Properties

Phase Separation in Polymer Blends and Its Effect on Mechanical Properties PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 354

Book Description


Conference Proceedings

Conference Proceedings PDF Author: Society of Plastics Engineers. Technical Conference
Publisher:
ISBN:
Category : Plastics
Languages : en
Pages : 1170

Book Description