Last edited by Dukazahn
Tuesday, July 28, 2020 | History

7 edition of Stimuli-Responsive Water Soluble and Amphiphilic Polymers found in the catalog.

Stimuli-Responsive Water Soluble and Amphiphilic Polymers

by Charles L. McCormick

  • 327 Want to read
  • 38 Currently reading

Published by An American Chemical Society Publication .
Written in English

    Subjects:
  • Polymer Chemistry,
  • Smart materials,
  • Science,
  • Science/Mathematics,
  • Textiles & Polymers,
  • Chemistry - Organic,
  • Material Science,
  • Science / Chemistry / Organic,
  • Technology-Material Science,
  • Technology-Textiles & Polymers,
  • Congresses,
  • Water soluble polymers

  • Edition Notes

    SeriesAcs Symposium Series
    The Physical Object
    FormatHardcover
    Number of Pages368
    ID Numbers
    Open LibraryOL8227048M
    ISBN 100841237255
    ISBN 109780841237254

    The properties of such materials can be tuned by subtle adjustments in temperature, pH, light, and so forth. Among such smart materials, multi‐stimuli‐responsive polymeric materials are of pronounced significance as they offer a wide range of applications and their properties can be tuned through several mechanisms. @article{osti_, title = {Biochemical synthesis of water soluble conducting polymers}, author = {Bruno, Ferdinando F., E-mail: [email protected] and Bernabei, Manuele}, abstractNote = {An efficient biomimetic route for the synthesis of conducting polymers/copolymers complexed with lignin sulfonate and sodium (polystyrenesulfonate) (SPS) will be presented.

    in many cases hydrogel films prepared from water-soluble poly-mers) are materials in which surface confinement brings a range of opportunities for engineering stimuli-responsive properties. An important attribute of gel thin films is their fast kinetics of swell-ing and shrinking compared with bulk gels. According to TanakaFile Size: 1MB. Of all the living radical polymerization techniques, reversible addition– fragmentation chain transfer (RAFT) polymerization is arguably the most versatile in terms of the reaction conditions (e.g. temperature and solvent selection), monomer selection (e.g. neutral, anionic, cationic, and zwitterionic), and purification. Since the introduction of RAFT in , the McCormick research Author: Matthew Grady Kellum.

    Smart polymers, stimuli-responsive polymers or functional polymers are high-performance polymers that change according to the environment they are in. Such materials can be sensitive to a number of factors, such as temperature, humidity, pH, chemical compounds, the wavelength or intensity of light or an electrical or magnetic field and can respond in various ways, like altering .   @article{osti_, title = {FOR STIMULI-RESPONSIVE POLYMERS WITH ENHANCED EFFICIENCY IN RESERVOIR RECOVERY PROCESSES}, author = {McCormick, Charles and Hester, Roger}, abstractNote = {To date, our synthetic research efforts have been focused on the development of stimuli-responsive water-soluble polymers designed for use in .


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Stimuli-Responsive Water Soluble and Amphiphilic Polymers by Charles L. McCormick Download PDF EPUB FB2

Stimuli responsive water soluble block copolymers have attracted considerable interest in the last two decades because of their self-assembly and phase. ISBN: OCLC Number: Description: xii, pages: illustrations ; 24 cm. Contents: Stimuli responsive water-soluble and amphiphilic copolymers / Andrew B.

Lowe and Charles L. McCormick --Stimuli-responsive associative behavior of polyelectrolyte-bound nonionic surfactant moieties in aqueous media / Akihito Hashidzume. Driven by the dual needs for technologically smart and environmentally compatible materials synthesized, dispersed, and delivered in water or aqueous media, this book examines current developments in this rapidly growing area in polymer science.

Chapters examine the relationships between fundamental polymer structure and physical behavior in aqueous media in response. Stimuli-Responsive Water Soluble and Amphiphilic Polymers. Editor(s): Stimuli Responsive Water-Soluble and Amphiphilic (Co)polymers. Stimuli-Responsive Associative Behavior of Polyelectrolyte-Bound Nonionic Surfactant Moieties in.

Stimuli responsive water-soluble and amphiphilic copolymers / Andrew B. Lowe and Charles L. McCormick Stimuli-Responsive Water Soluble and Amphiphilic Polymers book associative behavior of polyelectrolyte-bound nonionic surfactant moieties in aqueous media / Akihito Hashidzume, Tetsuya Noda, and Yotaro Morishima --Micellar polymerization for the design of responsive amphiphilic.

Stimuli-Responsive Water Soluble and Amphiphilic Polymers Edited by Charles L. McCormick (University of Southern Mississippi). American Chemical Society: Washington, DC (Distributed by Oxford University Press).

xii + pp. $ ISBN Stimuli-Responsive Water Soluble and Amphiphilic Polymers (ACS Symposium Series) by McCormick, Charles. American Chemical Society. Used - Like New. Used - Like New. Book is new and unread but may have minor shelf wear.

Ships from UK in 48 hours or less usually same day. Your purchase helps support the African Children's Educational Trust A-CET. The assembled amphiphilic molecules in aqueous solution will form a nanosized micelles structure in which the hydrophobic structure at the core is used to place the hydrophobic drugs, and the hydrophilic shells soluble with water eventually easily uptake by the mononuclear phagocyte system (Fig.

) [42].The hydrophobic micelles core is vital for nonpolar solvents. This new book offers practical insights into the latest developments in responsive polymers, i.e., polymers engineered to alter structure and properties in response to environmental inputs.

The book features original design, methodological, and application data. Chemists, biochemists, and electronic engineers will find here important new material to understand and Author: Sergiy Minko.

Water-soluble segmented macromolecules have attracted tremendous interest in the last decade, either in amphiphilic or “double” hydrophilic mode, due to their ability to self-assemble spontaneously in aqueous media forming nanoobjects of unique morphologies and functionalities, useful for various applications in cosmetics, paints Cited by: Advances in polymer science have led to the development of novel drug delivery systems.

Some polymers are obtained from natural resources and then chemically modified for various applications, while others are chemically synthesized and used. A large number of natural and synthetic polymers are available. In the present paper, only water soluble polymers are Cited by: Specifically, water-soluble, stimuli-responsive block, graft, and star copolymers have become especially significant in targeted delivery of diagnostic and therapeutic agents.

In many cases RAFT polymerization is carried out directly in water at ambient temperature without the need for protecting group by: Water-soluble (co)polymers represent a diverse class of macromolecules ranging from naturally occurring biopolymers such as polysaccharides and most polypeptides to.

In these decades, smart or intelligent materials have drawn considerable interest from researchers in materials science. In these materials, polymers, which change their properties responsive to external stimuli, play a vital role [1, 2].This entry describes briefly stimuli and responses for stimuli-responsive polymers and overviews some typical examples of stimuli.

In this paper, the example of noncovalently synthesized multi-compartment micelles (MCMs) has been demonstrated on the basis of a supra-amphiphilic polymer.

The supra-amphiphilic polymer can be obtained directly by mixing a commercially available copolymer and a natural vitamin under weak basic conditions, f Supramolecular and dynamic covalent polymersCited by:   Stimuli-responsive polymers can be engineered, in both film and colloid forms, to respond to a variety of inputs, from temperature to pH.

The Cited by: Smart inorganic polymers (SIPs) are hybrid or fully inorganic polymers with tunable properties such as stimuli responsive physical properties (shape, conductivity, rheology, bioactivity, self-repair, sensing etc.). While organic polymers are often petrol-based, the backbones of SIPs are made from elements other than carbon which can lessen the burden on scarce non-renewable.

Toward the organic polymer, hybrid elements can be defined as those beyond C, H, O, and N. Polymers comprising hybrid elements, such as Si, P, B, or metal ions have attracted great attention in the design of high performance or smart materials.

Introduction of hybrid elements into a polymeric network may also lead to the formation of new intermolecular interactions, thus Cited by: 1. AQUEOUS RAFT SYNTHESIS OF STIMULI-RESPONSIVE, AMPHIPHILIC BLOCK COPOLYMERS AND SELF-ASSEMBLY BEHAVIOR IN SOLUTION AND INCORPORATION INTO LBL FILMS by Matthew Grady Kellum May Of all the living radical polymerization techniques, reversible addition fragmentation chain transfer (RA FT) polymerization is Author: Matthew Grady Kellum.

Triple stimuli‐responsive amphiphilic glycopolymer. Wenjuan Guo. Department of Polymer Science and Engineering, School of Chemistry and Chemical Engineering, University of Jinan, Jinan, China K. Amighi, J. Goole and F. Meyer, Triple-stimuli responsive polymers with fine tuneable magnetic responses, Polymer Chemistry, 8, 16, (.

PVCL is hydrophilic and water soluble at room tempera-ture, gradually becoming hydrophobic and insoluble from 25 uCto35uC PEO polymers are highly soluble in water up to temperatures of y85 uC, while PPO itself is hydrophobic, but co-polymers of these materials can be prepared with a very wide range of solubilities and phase transition behaviour.Due to the versatile selection of backbone and functional groups, stimuli-responsive polymers can be tailored to have a variety of specific mechanical, chemical, electrical, optical, biological, or other properties and can be engineered into different forms, including bulk, thin film, micro/nanoparticles, and by: 2.Responsive polymer-based materials are capable of altering their chemical and/or physical properties upon exposure to external stimuli.

These materials have been intensively studied over the years for a diverse range of applications, e.g., for on-demand drug delivery, tissue generation/repair, biosensing, sm Stimulus-responsive polymers.