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1000 tulosta hakusanalla "Polymers"

Electron Microscopy of Polymers

Electron Microscopy of Polymers

Goerg H. Michler

Springer-Verlag Berlin and Heidelberg GmbH Co. K
2008
sidottu
The study of polymers by electron microscopy (EM) needs special techniques, precautions and preparation methods, including ultramicrotomy. General characteristics of the different techniques of EM, including scanning force microscopy, are given in this hands-on book. 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.
NMR Spectroscopy of Polymers

NMR Spectroscopy of Polymers

Tatsuki Kitayama; Koichi Hatada

Springer-Verlag Berlin and Heidelberg GmbH Co. K
2004
sidottu
NMR Spectroscopy of Polymers places emphasis on the practical use of NMR spectroscopy in polymer chemistry rather than the theoretical treatments. Based on the authors' extensive experimental experience, topics covered include (1) experimental problems such as preparation of sample solution, selection of solvent, internal standard and tube, and contaminants in sample solution, (2) accuracy and precision of NMR measurements required in the analysis of polymer structure such as tacticity, copolymer composition and chain end structures, (3) volume magnetic susceptibility by NMR, (4) stereochemistry of polymer chains, chemical composition and comonomer sequence distribution in copolymers, and end groups and irregular linkages, (5) on-line coupled size exclusion chromatography(SEC) and NMR spectroscopy(SEC/NMR) in which an NMR spectrometer is set in the SEC system as a detector.
Viscosimetry of Polymers and Polyelectrolytes

Viscosimetry of Polymers and Polyelectrolytes

Werner-Michael Kulicke; Christian Clasen

Springer-Verlag Berlin and Heidelberg GmbH Co. K
2004
sidottu
This laboratory handbook offers clear guidelines and tips for the practical everyday application of viscosimetry, as well as supplying a comprehensive companion for the interpretation of viscosimetric data from simple to complex polymer solutions.
Statistical Physics of Polymers

Statistical Physics of Polymers

Toshihiro Kawakatsu

Springer-Verlag Berlin and Heidelberg GmbH Co. K
2004
sidottu
This book is an introductory textbook on the statistical mechanics of poly­ mers and complex fluids aimed at senior undergraduate and graduate stu­ dents and non-specialist researchers who are starting research in this field. Modern statistical mechanics on polymers and complex fluids is based on many fields, such as chemical physics, statistical mechanics, quantum me­ chanics, stochastic processes, theory of phase transitions, hydrodynamics, rheology, and so on. This book provides an overview of the basic concepts and methods used in current research on the physics of polymers and complex fluids. Using simple but essential examples, we describe how to derive the physical properties of polymers theoretically, focusing on the structure and dynamics on mesoscopic scales. Here, the term 'mesoscopic scales' means intermediate lengths and time scales between the microscopic atomic scale and the macroscopic scale. Properties on mesoscopic scales are the central issue of the physics of polymers and complex fluids, because these materials are well characterized by spatiotemporal structures on these scales, where we can extract universal properties that are independent of the microscopic details of the system.
Radiation Effects on Polymers for Biological Use

Radiation Effects on Polymers for Biological Use

Springer-Verlag Berlin and Heidelberg GmbH Co. K
2003
sidottu
Biomaterials repair, reinforce or replace damaged functional parts of the (human) body. All mechanical and biological interactions between an implant and the body occur across the interface, which has to correspond as nearly as possible to its particular function. Much of the progress in adapting polymer materials for use in a biological environment has been obtained through irradiation techniques. For this reason the most recent developments in four key areas are reviewed in this special volume: (1) the analysis of the topology and the elemental composition of a functional surface, (2) the chemical modification of the surface which results in highly pure, sterile and versatile surfaces, (3) the sterilisation of implantable devices via ionising radiation and its possible effects on the structural mechanical properties of polymers, and (4) the radiation effects on living cells and tissues which are of particular importance for radiation protection and radiotherapy.
HPLC of Polymers

HPLC of Polymers

Harald Pasch; Bernd Trathnigg

Springer-Verlag Berlin and Heidelberg GmbH Co. K
1999
nidottu
Polymers are mainly characterized by molar mass, chemical composition, functionality and architecture. The determination of the complex structure of polymers by chromatographic and spectroscopic methods is one of the major concerns of polymer analysis and characterization. This lab manual describes the experimental approach to the chromatographic analysis of polymers. Different chromatographic methods, their theoretical background, equipment, experimental procedures and applications are discussed. The book will enable polymer chemists, physicists and material scientists as well as students of macromolecular and analytical science to optimize chromatographic conditions for a specific separation problem. Special emphasis is given to the description of applications for homo- and copolymers and polymer blends.
Hydrogen Bonded Polymers

Hydrogen Bonded Polymers

Springer-Verlag Berlin and Heidelberg GmbH Co. K
2007
sidottu
Control of polymeric structure is among the most important endeavours of modern macromolecular science. In particular, tailoring the positioning and strength of intermolecular forces within macromolecules by synthetic me- odsandthusgaining structuralcontrolover the?nalpolymeric materials has become feasible, resulting in the ?eld of supramolecular polymer science. - sides other intermolecular forces, hydrogen bonds are unique intermolecular forces enabling the tuning of material properties via self-assembly processes -1 overawiderangeofinteractionstrengthrangingfromseveralkJmol tosev- -1 eraltensofkJmol . Centralfortheformationofthesestructuresareprecursor molecules of small molecular weight (usually lower than 10 000), which can assembleinsolidorsolutiontoaggregatesofde?nedgeometry. Intermolecular hydrogenbondsatde?nedpositionsofthesebuildingblocksaswellastheir- spectivestartinggeometryandtheinitialsizedeterminethemodeofassembly into supramolecular polymers forming network-, rodlike-, ?brous-, disclike- , helical-, lamellar- and chainlike architectures. In all cases, weak to strong hydrogen-bondinginteractionscanactasthecentralstructure-directingforce fortheorganizationofpolymerchainsandthusthe?nalmaterials'properties. Theimportantcontributionofhydrogenbondstotheareaofsupramole- lar polymer chemistry is de?nitely outstanding, most of all since the potency of hydrogen-bonding systems has been found to be unique in relation to other supramolecular interactions. Thus the high level of structural diversity of many hydrogen-bonding systems as well as their high level of direction- ity and speci?city in recognition-phenomena is unbeaten in supramolecular chemistry. The realization, that their stability can be tuned over a wide range of binding strength is important for tuning the resulting material prop- ties, ranging from elastomeric to thermoplastic and even highly crosslinked duroplastic structures and networks. On the basis of the thermal reversib- ity, new materials with highly tunable properties can now be prepared, - ing able to change their mechanical and optoelectronic properties with very smallchangesofexternalstimuli. Thusthe?eldofhydrogen-bondedpolymers forms the basis for stimuli responsive and adaptable materials of the future.
Synthesis of Photocleavable polymers for Nanoporous Thim Films
Polymers have a very close relationship with our normal life, for example, the proteins and starch in food are polymers. They can be classified as natural and synthetic polymers based on their sources. A polymer has high relative molecular mass and polydispersity. From the view of chemistry, a polymer is a compound that contains repeating units created through polymerization. The repeating units in polymers are called monomers. Homopolymer is a polymer derived from one monomer while copolymer from two (or more) monomeric species. Copolymers are classified as alternating, period, statistical or block copolymers based on the manner in which the copolymers are connected together. Among the categories of copolymers, block copolymers consisting of chemically distinct polymers linked by a covalent bond have attracted increasing attention for their ability to self-assemble into a variety of ordered nanostructures.
Fundamentals of Ion-Irradiated Polymers

Fundamentals of Ion-Irradiated Polymers

Springer-Verlag Berlin and Heidelberg GmbH Co. K
2010
nidottu
Presented in two parts, this first comprehensive overview addresses all aspects of energetic ion irradiation of polymers. Earlier publications and review articles concentrated on selected topics only. And the need for such a work has grown with the dramatic increase of research and applications, such as in photoresists, waveguides, and medical dosimetry, during the last decade. The first part, Fundamentals of Ion-Irradiated Polymers, covers the physical, chemical and instrumental fundamentals; treats the specific irradiation mechanisms of low- and high-energy ions (including similarities and differences); and details the potential for future technological application. All the new findings are carefully analyzed and presented in a systematic way, while open questions are identified. The second volume, Transport Processes in Ion-Irradiated Polymers, deals with transport processes in both unirradiated and irradiated polymers. As both a review and a stimulus, this work seeks to contribute substantially to the literature and advancement of polymeric devices, from both the low- and high-energy regimes.
Inorganic and Organometallic Polymers

Inorganic and Organometallic Polymers

Vadapalli Chandrasekhar

Springer-Verlag Berlin and Heidelberg GmbH Co. K
2010
nidottu
This book has its origins in courses taught by the author to various und- graduate and graduate students at the Indian Institute of Technology, K- pur, India. The diversity of inorganic chemistry and its impact on polymer chemistry has been profound. This subject matter has grown considerably in the last decade and the need to present it in a coherent manner to young minds is a pedagogic challenge. The aim of this book is to present to the students an introduction to the developments in Inorganic and - ganometallic polymers. This book is divided into eight chapters. Chapter 1 provides a general overview on the challenges of Inorganic polymer synthesis. This is f- lowed by a survey of organic polymers and also includes some basic f- tures of polymers. Chapters 3-8 deal with prominent families of inorganic and organometallic polymers. Although the target group of this book is the undergraduate and graduate students of chemistry, chemical engineering and materials science it is also hoped that chemists and related scientists in industry would find this book useful. I am extremely thankful to my wife Sudha who not only encouraged me throughout but also drew all the Figures and Schemes of this book. I also thank my children Adithya and Aarathi for their constant concern on the progress of this book. I express my acknowledgment to the editorial team of Springer-Verlag for their cooperation.
The Physics of Polymers

The Physics of Polymers

Gert R. Strobl

Springer-Verlag Berlin and Heidelberg GmbH Co. K
2010
nidottu
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.