Polymer Molecular Weights

Polymer Molecular Weights
Title Polymer Molecular Weights PDF eBook
Author Philip E. Slade
Publisher
Pages 360
Release 1975
Genre Science
ISBN

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The Science of Polymer Molecules

The Science of Polymer Molecules
Title The Science of Polymer Molecules PDF eBook
Author Richard H. Boyd
Publisher Cambridge University Press
Pages 436
Release 1993
Genre Science
ISBN 9780521565080

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An introduction concerning the synthesis, structure and properties of the individual molecules constituting polymeric materials.

Molecular Characterization of Polymers

Molecular Characterization of Polymers
Title Molecular Characterization of Polymers PDF eBook
Author Muhammad Imran Malik
Publisher Elsevier
Pages 670
Release 2021-03-09
Genre Technology & Engineering
ISBN 012822598X

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Molecular Characterization of Polymers presents a range of advanced and cutting-edge methods for the characterization of polymers at the molecular level, guiding the reader through theory, fundamentals, instrumentation, and applications, and supporting the end goal of efficient material selection and improved material performance. Each chapter focuses on a specific technique or family of techniques, including the different areas of chromatography, field flow fractionation, long chain branching, static and dynamic light scattering, mass spectrometry, NMR, X-Ray and neutron scattering, polymer dilute solution viscometry, microscopy, and vibrational spectroscopy. In each case, in-depth coverage explains how to successfully implement and utilize the technique. This practical resource is highly valuable to researchers and advanced students in polymer science, materials science, and engineering, and to those from other disciplines and industries who are unfamiliar with polymer characterization techniques. - Introduces a range of advanced characterization methods, covering aspects such as molecular weight, polydispersity, branching, composition, and tacticity - Enables the reader to understand and to compare the available technique, and implement the selected technique(s), with a view to improving properties of the polymeric material - Establishes a strong link between basic principles, characterization techniques, and real-life applications

Polymer Molecular Weights, (2 Part)

Polymer Molecular Weights, (2 Part)
Title Polymer Molecular Weights, (2 Part) PDF eBook
Author Philip E. Slade
Publisher CRC Press
Pages 304
Release 1975-03-01
Genre Science
ISBN 9780824762278

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This two-part book incorporates in one definitive publication the major techniques used to determine the molecular weights of polymers as presented by some of the most respected authorities in the field. Part I of this practical guide covers membrane osmometry, end group determinations, absolute colligative property methods, and light-scattering methods. Discussions on theoretical background are included for every experimental procedure, as are examples of applications in polymeric processes. The information contained in Polymer Molecular Weights cannot be found in any other single publication, making it the most convenient source of information on molecular weight measurement for polymer chemists and physicists, analytical and physical chemists, biochemists, and other scientists in the plastics and synthetic fiber industries. Book jacket.

Polymer Fractionation

Polymer Fractionation
Title Polymer Fractionation PDF eBook
Author Frieder Francuskiewicz
Publisher Springer Science & Business Media
Pages 230
Release 2013-03-09
Genre Science
ISBN 3642787045

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Fractionation of polymers via solubility has been a well known method in polymer characterization for a long time. The original object of analytical fractionations, the determination of the molecular weight distribution, is nowadays achieved more efficiently and conveniently by chromatographic methods. However, fractionation procedures, which were developed in great diversity, remain up~to-date and essential for obtaining preparative fractions with narrow distributions. Such fractions are wanted increasingly for the investigation of true structure-property relationships which are mostly influ~ enced by distributions of molecular weight or other parameters such as branching or chemical composition. Literature on the field of polymer fractionation is extensive and several reviews exist. However, there is a lack of systematically methodical instruc tions for carrying-out of diverse fractionation procedures. This volume repre sents an attempt to reduce this deficiency and is focussed on practical aspects of fractionation procedures. This laboratory manual is intended for polymer chemists, physicists, and technicians, for students of polymer science, and skilled laboratory assistants, all of whom are not dealing directly with fractionation but are in need of fractions to carry out further investigations.

Principles of Polymer Chemistry

Principles of Polymer Chemistry
Title Principles of Polymer Chemistry PDF eBook
Author Paul J. Flory
Publisher Cornell University Press
Pages 696
Release 1953
Genre Reference
ISBN 9780801401343

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Handbook of Polymer Synthesis, Characterization, and Processing

Handbook of Polymer Synthesis, Characterization, and Processing
Title Handbook of Polymer Synthesis, Characterization, and Processing PDF eBook
Author Enrique Saldivar-Guerra
Publisher John Wiley & Sons
Pages 660
Release 2013-02-28
Genre Technology & Engineering
ISBN 1118480775

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Covering a broad range of polymer science topics, Handbook of Polymer Synthesis, Characterization, and Processing provides polymer industry professionals and researchers in polymer science and technology with a single, comprehensive handbook summarizing all aspects involved in the polymer production chain. The handbook focuses on industrially important polymers, analytical techniques, and formulation methods, with chapters covering step-growth, radical, and co-polymerization, crosslinking and grafting, reaction engineering, advanced technology applications, including conjugated, dendritic, and nanomaterial polymers and emulsions, and characterization methods, including spectroscopy, light scattering, and microscopy.