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protein2008

至尊木虫 (知名作家)

Fundamentals of Polymer Chemistry




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Introduction to Polymer Chemistry – Seymour



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Polymer Chemistry



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Organic and Physical Chemistry of Polymers



By Yves Gnanou, Michel Fontanille



Publisher: Wiley-Interscience
Number Of Pages: 617
Publication Date: 2008-02-25
ISBN-10 / ASIN: 0471725439
ISBN-13 / EAN: 9780471725435
Binding: Hardcover



Book Description:


"A scholarly and authoritative introduction to polymers . . . I recommend it wholeheartedly."

-Norbert Bikales, former program director, PolymersDivision of Materials Research of the National Science Foundation



Organic and Physical Chemistry of Polymers provides a thorough introduction to the fundamentals of polymers, including their structure and synthesis as well as their chemical and physical properties. This accessible guide illuminates the increasingly important role of polymers in modern chemistry, beginning with the essentials, and:

*





Covers thermodynamics, conformation, morphology, and measurements of molar masses

*





Discusses polymerization mechanisms, reaction of polymers, synthesis of block and graft polymers, and complex topologies

*





Addresses the mechanical properties, rheology, polymer processing, and fabrication of fibers and films

*





Includes figures, tables, and suggested resources for further information



With basic data about the various classes of commodity, technical, and specialty polymers, this is an excellent text for advanced undergraduate and graduate students in physical and/or polymer chemistry, and a practical reference for researchers and professionals in the polymer industry.





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Seymour Carraher s Polymer Chemistry Undergraduate Chemistry 16




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Polymer Solutions: An Introduction to Physical Properties



By Iwao Teraoka


Publisher: Wiley-Interscience
Number Of Pages: 360
Publication Date: 2002-03-07
ISBN-10 / ASIN: 0471389293
ISBN-13 / EAN: 9780471389293
Binding: Hardcover
Product Description:



Polymer Solutions: An Introduction to Physical Properties offers a fresh, inclusive approach to teaching the fundamentals of physical polymer science. Students, instructors, and professionals in polymer chemistry, analytical chemistry, organic chemistry, engineering, materials, and textiles will find Iwao Teraoka’s text at once accessible and highly detailed in its treatment of the properties of polymers in the solution phase.




Teraoka’s purpose in writing Polymer Solutions is twofold: to familiarize the advanced undergraduate and beginning graduate student with basic concepts, theories, models, and experimental techniques for polymer solutions; and to provide a reference for researchers working in the area of polymer solutions as well as those in charge of chromatographic characterization of polymers. The author’s incorporation of recent advances in the instrumentation of size-exclusion chromatography, the method by which polymers are analyzed, renders the text particularly topical.

Subjects discussed include:


Real, ideal, Gaussian, semirigid, and branched polymer chains
Polymer solutions and thermodynamics
Static light scattering of a polymer solution
Dynamic light scattering and diffusion of polymers
Dynamics of dilute and semidilute polymer solutions

Study questions at the end of each chapter not only provide students with the opportunity to test their understanding, but also introduce topics relevant to polymer solutions not included in the main text. With over 250 geometrical model diagrams, Polymer Solutions is a necessary reference for students and for scientists pursuing a broader understanding of polymers.




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11楼2009-06-03 01:29:52
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protein2008

至尊木虫 (知名作家)

Fundamentals of Polymer Engineering


By Arie Ram


Publisher: Springer
Number Of Pages: 264
Publication Date: 1997-12-31
ISBN-10 / ASIN: 0306457261
ISBN-13 / EAN: 9780306457265


Product Description:

This ideal introductory text covers the basics of polymer chemistry and engineering, as well as structure-property relationships in plastics, in a concise manner. Technically authoritative and up-to-date, the volume offers a survey of the basic chemistry of monomers and their conversion to the various polymers, the essentials of structure and performance, rheology of polymers as liquids and solids, and mechanical properties. Problem sets enhance the book's suitability for advanced undergraduates in chemical engineering or materials science.



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Fundamentals of Polymer Engineering, Second Edition,




(Plastics Engineering)




By Anil Kumar, Rakesh K. Gupta
Publisher: CRC
Number Of Pages: 712
Publication Date: 2003-01-21
ISBN-10 / ASIN: 0824708679
ISBN-13 / EAN: 9780824708672
Binding: Hardcover
Book Description:



Exploring the characterization, thermodynamics and structural, mechanical, thermal and transport behavior of polymers as melts, solutions and solids, this text covers essential concepts and breakthroughs in reactor design and polymer production and processing. It contains modern theories, end-of-chapter problems and real-world examples for a clear understanding of polymer function and development. This book will prepare students in materials science and engineering for more advanced study in the field of polymers by providing a thorough grounding in the fundamentals of polymer science. Topics include reaction engineering of step-growth polymerization, emulsion polymerization, and polymer diffusion





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Handbook of Polymer Solution Thermodynamics





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Thermosetting Polymers





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Supramolecular Polymers





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Semiconducting Polymers





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Electroluminiscent Polymers





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Biorelated Polymers






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Plastics Fundamentals, Properties, and Testing (Plastics Engineering)






by: Manas Chanda, Salil K. Roy







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Handbook of Polymers in Electronics





by: B.D. Malhotra




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12楼2009-06-03 01:30:32
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protein2008

至尊木虫 (知名作家)

elf-Doped Conducting Polymers by Michael S. Freund, Bhavana A. Deore (2007)



Self-Doped Conducting Polymers by Michael S. Freund, Bhavana A. Deore (2007)
Publisher: Wiley | ISBN: 0470029695 | 2007 | Pages: 338 | PDF | 3.8 MB

Self-Doped Conducting Polymers provides an introduction to conducting polymers in general and self-doped conducting polymers in particular. This is followed by an in depth exploration of the synthesis, properties and utilization of several types of self-doped polymers. Optimization of self-doped polymers is also discussed.
1. Introduction.
1.1 Conducting Polymers.
1.2 What Are Self-doped Conducting Polymers?
1.3 Types of Self-doped Polymers.
1.4 Doping Mechanism in Self-doped Polymers.
1.5 Effect of Substituents on Properties of Polymer.
1.6 Applications of Self-doped Polymers.
References.
2. Self-doped Derivatives of Polyaniline.
2.0 Introduction.
2.1 Chemical Synthesis of Sulfonic Acid Derivatives.
2.2 Electrochemical Synthesis of Sulfonic Acid Derivatives.
2.3 Enzymatic Synthesis of Sulfonic Acid Derivatives.
2.4 Properties of Sulfonic Acid Derivatives.
2.5 Synthesis and Characterization of Carboxyl Acid Derivatives.
2.6 Synthesis and Characterization of Phosphonic Acid Derivatives.
2.7 Self-doped Polyaniline Nanostructures.
References.
3. Boronic acid Substituted Self-doped Polyaniline.
3.1 Introduction.
3.2 Synthesis.
3.3 Properties of Self-doped PABA.
3.4 Self-Cross-Linked Self-doped Polyaniline.
3.5 Applications.
References.
4. Self-doped Polythiophenes.
4.1 Sulfonic Acid Derivatives.
4.2 Carboxylate Derivatives.
4.3 Phosphanate Derivatives.
References.
5. Miscellaneous Self-doped Polymers.
5.1 Self-doped Sulfonated Polypyrrole.
5.2 Carboxyl Acid Derivative.
5.3 Self-doped Poly(3,6-carbaz-9-yl)propanesulfonate.
5.4 Self-doped Poly(p-phenylenes).
5.5Self-doped Polyphenylenevinylene.
5.6 Self-doped Poly(indole-5-carboxylic acid).
5.7 Self-doped Ionically Conducting Polymers.
References.

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13楼2009-06-03 01:31:24
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protein2008

至尊木虫 (知名作家)

Light-Associated Reactions of Synthetic Polymers by A. Ravve


Light-Associated Reactions of Synthetic Polymers by A. Ravve
Publisher: Springer | ISBN: 0387318035 | 2006 | Pages: 370 | PDF | 1.8 MB

Photo associated reactions and light responsive materials have great potential to improve existing industrial processes, including liquid crystal alignment and capturing solar energy. This book presents a range of reactions and materials with some of the most exciting current and future applications. It includes a brief introduction to photochemistry; in-depth discussion of photosensitizers, photoinititiators, and the processes of light curing and crosslinking; listing of light responsive polymers and their uses; and a discussion of polymeric materials for use in non-linear optics.

Table of contents
Introduction.-
Photosensitizers and Photoinitiators.-
Chemistry of Photo-Curable Compositions.-
Photo-Crosslinkable Polymers.-
Photo-Responsive Polymers.-
Photo-Refractive Polymers for Nonlinear Optics.

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protein2008

至尊木虫 (知名作家)

Phase Transitions in Polymers: The Role of Metastable States


Phase Transitions in Polymers: The Role of Metastable States
Publisher: Elsevier Science | Pages: 324 | 2008-08-29 | ISBN: 0444519114 | PDF | 19 MB

A classical metastable state possesses a local free energy minimum at infinite sizes, but not a global one. This concept is phase size independent. We have studied a number of experimental results and proposed a new concept that there exists a wide range of metastable states in polymers on different length scales where their metastability is critically determined by the phase size and dimensionality. Metastable states are also observed in phase transformations that are kinetically impeded on the pathway to thermodynamic equilibrium. This was illustrated in structural and morphological investigations of crystallization and mesophase transitions, liquid-liquid phase separation, vitrification and gel formation, as well as combinations of these transformation processes. The phase behaviours in polymers are thus dominated by interlinks of metastable states on different length scales. This concept successfully explains many experimental observations and provides a new way to connect different aspects of polymer physics.

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15楼2009-06-03 01:32:47
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protein2008

至尊木虫 (知名作家)

Biomedical Polymers and Polymer Therapeutics by Emo Chiellini


Biomedical Polymers and Polymer Therapeutics by Emo Chiellini
Publisher: Springer | ISBN: 0306464721 | 2001 | Pages: 470 | PDF | 14.4 MB

Proceedings of the Third International Symposium on Frontiers in Biomedical Polymers including Polymer Therapeutics: From Laboratory to Clinical Practice, held May 23--27, 1999, in Shiga, Japan.

This book focuses on the progress and unique discoveries in the interdisciplinary scientific and technological area of biomedical application of polymers. The topics include polymeric materials for biomedical and pharmaceutical applications, as well as polymeric materials in therapeutics.

Contents
PART 1. BIOMEDICAL POLYMERS AND POLYMER THERAPEUTICS
PART 2. POLYMERS IN DIAGNOSIS AND VACCINATION
PART 3. POLYMERS IN GENE THERAPY


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16楼2009-06-03 01:34:05
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protein2008

至尊木虫 (知名作家)

Solid-State Shear Pulverization
Publisher: CRC | Pages: 203 | 2001-04-30 | ISBN: 1566768039 | PDF | 5 MB
This book is the first extended look at a new and multifaceted polymer processing technology that has already been discussed in numerous articles. Called Solid-State Shear Pulverization (S3P), this innovative process produces polymeric powders with unique physical properties not found in the output of conventional size-reduction methods…. This technology, which utilizes a pulverizer based on a modified co-rotating twin-screw extruder…, has profound implications for both the creation of new polymer blends and recycling of plastic and rubber waste.

Unlike [earlier processes] where polymers are melted prior to pulverization, …pulverizing mixtures of polymers with the S3P process…does not involve melting. By contrast, S3P maintains polymers in the solid state and avoids the additional heat history that occurs during [other processes], which can be detrimental to the physical properties of pulverized materials. The research and development of the S3P technology…has grown significantly since 1990 from the development of a new plastics recycling process to a much broader polymer processing method that allows intimate mixing of polymers with very different viscosities, sold-state dispersion of additives, including pigments, and continuous production of powder with unique shapes and larger surface areas. Polymeric powders are of growing importance to plastics processors due to the increase use of plastics in various applications, such as rotational molding, powder coatings, and compounding, which require powder as the feedstock.

t has become clear that this process allows for in-situ compatibilization of dissimilar polymers by applying mechanical energy to cause chemical reactions. This aspect of S3P technology that we describe in this book should [be useful in] developing new polymer blends with the use of pre-made compatibilizing agents. In addition, it has been discovered that S3P efficiently mixes polymer blends with different component viscosities, resulting in the elimination of phase inversion. The S3P process directly produces blends with matrix and dispersed phase morphology like those obtained after phase inversion during a long melt-mixing process. This phenomenon is of practical importance because a long processing time is required by conventional melt-mixing to produce a stable blend morphology. S3P is also advantageous for producing thermoplastic or thermoset powder-coating compounds in a one-step process as opposed to a conventional multi-step operation that involves melt extrusion followed by batch grinding. The major capabilities of this new process can be summarized as follows:
Continuous powder production from plastics or rubber feedstocks
Blending of immiscible polymers
Efficient mixing of polymers with unmatched viscosities
Environmentally friendly recycling of multicolored, commingled plastics waste
Sold-state dispersion of heat-sensitive additives
Engineered plastic/rubber blends
Materials and processes well illustrated The text is well illustrated with 60 photographs, micrographs, diagrams and others figures. Here is a small sampling of the captions of these figures. o Particle-size distribution for virgin LDPE powder made with PT-25 pulverizer o Optical photograph of virgin LDPE powder made with PT-25 pulverizer o Layout for a three-stage rubber pulverizer o Flow chart for powder coating production by conventional process and with new S3P technology o SEM image of pulverized virgin PP at 40X (first in series of SEM images of polymer powders) o Optical micrograph of melt-crystallized thin films of unpulverized virgin PP under polarized light o Log of viscosity vs. log shear rate for virgin HDPE after S3P processing o Gel permeation chromatograms (GPC) of polystyrene subjected to S3P processing.

Color-photo section One of the several functions of Solid-State Shear Pulverization technology is recycling mixed plastic waste. This section of twenty full-color photographs and micrographs illustrates different processed materials, as well as the machinery and mixed waste used. Here is a small sampling of the photo and micrograph captions. o Resultant flake feedstock from granulation o S3P-made uniform powder from feedstock o Flake feedstock of post-consumer HDPE/PP blend (90/10 ratio) o Injection-molded test bar (with translucence) made from S3P powder without pelletization o Injection-molded test bar made from S3P powder without pelletization showing uniform color o Several test bars subjected to tensile testing showing exceptionally high elongation at break.

Useful reference data in tables More than 60 tables provide useful data in convenient form. Here is a small sampling of table captions. o Physical properties of virgin PP 8020 GU injection-molded from S3P-made powder (first in series of tables on physical properties of various plastics processed from S3P-made powder) o Sieve analysis of powder resulting from S3P of virgin LDPE 509.48 (one of series of tables on sieve analysis of polymer powders) o Melt-flow rate before and after S3P processing for virgin PS and two PP samples o Key physical properties of injection-molded post-consumer polyolefin blends pulverized by S3P process.

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17楼2009-06-03 01:34:44
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protein2008

至尊木虫 (知名作家)

Coordination Polymers: Design, Analysis and Application



Coordination Polymers: Design, Analysis and Application
Publisher: Royal Society of Chemistry | Pages: 471 | 2008-12-19 | ISBN 0854048375 | PDF | 5 MB

The field of coordination polymer research is now vast, and one of the fastest growing areas of chemistry in recent times, with important work being done on a large variety of different aspects. This book, however, provides for the first time a uniquely broad overview of all the major facets of modern coordination polymer science in the one place. It combines thorough chapters on nets and interpenetration with wide-ranging surveys of transition metal and lanthanoid coordination polymers and their properties (including magnetism, porosity, non-linear optical activity and catalysis).


The field of coordination polymer research is now vast, and one of the fastest growing areas of chemistry in recent times, with important work being done on a large variety of different aspects. This book, however, provides for the first time a uniquely broad overview of all the major facets of modern coordination polymer science in the one place.
It combines thorough chapters on nets and interpenetration with wide-ranging surveys of transition metal and lanthanoid coordination polymers and their properties (including magnetism, porosity, non-linear optical activity and catalysis).

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protein2008

至尊木虫 (知名作家)

The Physics of Polymers: Concepts for Understanding Their Structures and Behavior


Gert Strobl, "The Physics of Polymers: Concepts for Understanding Their Structures and Behavior"
Springer | 2007-03 | ISBN:3540252789 | 518 pages | PDF | 8,4 Mb

Polymer physics is a key part of macromolecular science. This textbook presents the elements of this important branch of materials science in the style of a series of lecture. The main focus lays on the concepts, rather than on experimental techniques and theoretical methods. Written for graduate students of physics, materials science and chemical engineering, as well as for researchers in academia and industry entering this field, the book introduces and discusses the basic phenomena that lead to the peculiar physical properties of polymeric systems.

After more than ten years since the first printing, the time had come for a revision and expansion of the book's contents. In addition to numerous minor modifications, this third edition includes some major changes: (i) A newly written chapter deals with conjugated polymers. The physical basis of the characteristic electro-optic response is explained, and the spectacular electrical conduction properties of conjugated polymers created by doping are discussed. (ii) Polyelectrolyte solutions with their special properties caused by Coulomb forces are newly treated in different chapters of the book dealing with ordering phenomena, viscous effects and the superswelling of gels. (iii) Since the basic understanding of melt crystallization has greatly changed during the last decade, the corresponding chapter was rewritten. It presents the new findings and interprets the discovered laws.

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19楼2009-06-03 01:36:40
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protein2008

至尊木虫 (知名作家)

Molecular interfacial phenomena of polymers and biopolymers Edited by P Chen (2005)
Publisher: Woodhead Publishing | ISBN: 1855739283 | 2005 | Pages: 685 | PDF | 23 MB

…it will be valued by researchers and postgraduate students with interest in polymers or biopolymers.
Materials World
All the sections are unique and specialised to the authors' field of expertise.
Materials World
- reviews key research in this hot area including biomaterials
- examines polymeric interfacial properties and reviews medical and other practical applications
- edited by a leading authority with contributions from distinguished experts worldwide
One of the most exciting areas of polymer research is the study of interfacial phenomena and their practical applications. This major work reviews the key research in this important area and is used in such areas as biomaterials.

Contents

PART 1 FUNDAMENTALS
PART 2 CHARACTERISATION, MANIPULATION AND APPLICATIONS

Introduction
PART 1 FUNDAMENTALS

Thermodynamics and kinetics of protein/surfactant mixtures at liquid interfaces
R Miller, Max-Planck-Institut für Kolloid- und Grenzflächenforschung, Germany, and V B Fainerman, Donetsk Medical University, Ukraine

Non-Fickian diffusion in systems with complex interfaces
D De Kee, J Hinestroza and Q Liu, Tulane University, USA

Semiflexible polymers: from statics to dynamics
S Jun and J Bechhoefer, Simon Fraser University, and B Y Ha, University of Waterloo, Canada

Molecular modelling of polymer surfaces and interfaces
L Zhao and P Choi, University of Alberta, Canada

Thermodynamics of contact angles on rough, heterogeneous surfaces
J Long and P Chen, University of Waterloo, Canada

PART 2 CHARACTERISATION, MANIPULATION AND APPLICATIONS

Application of axisymmetric drop shape analysis (ADSA) to the study of biomolecules
Y Y Zuo and A W Neumann, University of Toronto, Canada

Surface-energetic properties of polymers in controlled architecture
K Grundke, Institute of Polymer Research Dresden, Germany

Scanning probe microscopy – application for the study of soft materials
A L Slade, Sandia National Laboratories, Mexico, and C M Yip, University of Toronto, Canada

Self-assembly of peptides and its potential application
S Y Fung, Y Hong, C Keyes and P Chen, University of Waterloo, Canada

Physiochemical modulation of immobilised extracellular matrix
T Pompe and C Werner, Leibniz-Institut für Polymerforschung Dresden e.V., Germany

Triblock copolymers as promoters of solubilization of oils in aqueous surfactant solutions
P A Kralchevsky and N D Denkov, University of Sofia, Bulgaria

Polymeric composite membranes and biomimetic affinity ligands for bioseparation and immunoadsorption
L Yang, BioVectra TM DCL, and P Chen, University of Waterloo, Canada

Surface and interfacial studies of plant biopolymers
J D Batteas and R E Stark, College of Staten Island, CUNY, USA

Biodegradable polymer microparticles for genetic vaccine delivery
C Wang, University of Minnesota, USA

Polyelectrolyte coupling with lipid monolayers
G Brezesinski and H Möhwald, Max Planck Institute of Colloids and Interfaces, Germany

Interfacial properties of amphiphilic dendritic polymers
G N Njikang and M Gauthier, University of Waterloo, Canada

Studying polymeric systems in solution
J Duhamel, University of Waterloo, Canada

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