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Handbook of radical polymerization.
Authors: ---
ISBN: 047139274X Year: 2002 Publisher: Hoboken Wiley-Interscience

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Abstract

(Co)polymers prepared via free radical mechanism, together with polyolefins, comprise the largest portion of the commodity plastics industry and are also used for preparation of many specialty materials. Handbook of Radical Polymerization provides a concise source of information on mechanisms, synthetic techniques, and characterization methods and addresses future trends for polymers made by free radical intermediates. A one-stop, at-your-fingertips source of information for students, researchers, technologists, and industrial managers, the Handbook functions as a single reference of the conventional and controlled/living radical polymerization methods. Two expert editors collect and present historical background of the technique, basic information regarding various free radical polymerization systems, and state-of-the-art experimental techniques and industrial applications. Chapters written by internationally acclaimed experts in their respective fields include: Theory of Radical Reactions The Kinetics of Free Radical Polymerization Industrial Applications and Processes Nitroxide Mediated Living Radical Polymerization Atom Transfer Radical Polymerization Control of Free Radical Polymerization by Chain Transfer Methods Macromolecular Engineering by Controlled Radical Polymerization Guaranteed to have a long shelf life, the Handbook of Radical Polymerization promises to be an indispensable resource for chemists, chemical engineers, material scientists, and graduate students in the field, as well as a valuable addition to industrial, academic, and government libraries.

Contemporary polymer chemistry.
Authors: --- ---
ISBN: 0130650560 Year: 2003 Publisher: Upper Saddle River Pearson Education

Electron microscopy of polymers
Authors: ---
ISBN: 9783540363507 9783540363521 Year: 2008 Publisher: Berlin Springer

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There are many books on electron microscopy, however, the study of polymers using EM necessitates special techniques, precautions and preparation methods, including ultramicrotomy. This book discusses the general characteristics of the various techniques of EM, including scanning force microscopy (AFM). The application of these techniques to the study of morphology and properties, particularly micromechanical properties, is described in detail. Examples from all classes of polymers are presented.


Periodical
Macromolecules
Author:
ISSN: 00249297 15205835 Year: 1968 Publisher: Washington (D.C.) American chemical society,.

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Abstract

Focuses on all fundamentals of polymer science, including synthesis, polymerization mechanisms and kinetics, chemical modification, solution/melt/solid-state characteristics, and theory and simulation, as well as surface properties of organic, inorganic, and naturally occurring polymers.


Book
Polymeric materials for microelectronic applications : science and technology
Authors: --- --- --- ---
ISBN: 0841230552 Year: 1994 Volume: 579


Book
Static SIMS handbook of polymer analysis. A reference book of standard data for identification and interpretation of static SIMS data
Authors: --- ---
ISBN: 0962702609 Year: 1991 Publisher: Eden Prairie Perkin-Elmer


Book
Polymers in electronics : 185th meeting of the American Chemical Socie ty, Seattle, March 20-25, 1983
Authors: ---
ISBN: 0841208239 9780841208230 Year: 1984 Volume: 242


Book
Biosensors and chemical sensors : optimizing performance through polymeric materials
Authors: ---
ISBN: 0841222185 Year: 1992 Volume: vol 487 Publisher: Washington, DC American Chemical Society

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Abstract

Provides in-depth coverage of advances in polymeric materials used for designing biosensors and chemical sensors, including permselective membranes and immobilization for enzyme systems, electropolymerized thin films, polymer membranes on planar substrates, and hydration-dependent polymer applications. Covers fundamental aspects relevant to the design and fabrication of biosensors and offers unique insights into materials used for their fabrication. Offers an interdisciplinary approach toward correlating material properties with biosensor and chemical sensor response to optimize sensor performance. Also includes an overview chapter by Elizabeth Hall.

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