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protein2008

至尊木虫 (知名作家)

[交流] 关于Polymer大放送

Biomaterials and Bioengineering Handbook

(Hardcover)

by Donald L. Wise

Editorial Reviews

EStreams, 2000
"Highly recommended for the academic bioengineering/biomedical library."

Journal of Controlled Release
"…[a] comprehensive reference... …covers a wide range of biomaterials from polymers to metals and ceramics."

See all Editorial Reviews


Product Details




Hardcover: 920 pages

Publisher: Marcel Dekker
(March 2000)
Language: English
ISBN-10: 0824703189
ISBN-13: 978-0824703189
Product Dimensions: 10 x 7 x 1.8 inches

Shipping Weight: 4 pounds


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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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protein2008

至尊木虫 (知名作家)

Polymer Foams Handbook: Engineering and Biomechanics Applications and Design Guide



Nigel Mills, "Polymer Foams Handbook: Engineering and Biomechanics Applications and Design Guide"
Butterworth-Heinemann | 2007-03-23 | ISBN: 0750680695 | 562 pages | PDF | 9,8 MB

This handbook explores the applications of polymer foams, and the properties that make them suitable for so many applications, in the detail required by postgraduate students, researchers and the many industrial engineers and designers who work with polymer foam in industry.
It covers the mechanical properties of foams and foam microstructure, processing of foams, mechanical testing and analysis (using Finite element analysis). In addition, it uniquely offers a broader perspective on the actual engineering of foams and foam based (or foam including) products by including nine detailed case studies which firmly plant the theory of the book in a real world context, making it ideal for both polymer engineers and chemists and mechanical engineers and product designers.
* Complete coverage of the mechanical and design aspects of polymer foams from an acknowledged international expert: no other book is available with this breadth making this a plastics engineer's first choice for a single volume Handbook
* Polymer foams are ubiquitous in modern life, used everywhere from running shoes to furniture, and this book includes nine extensive case studies covering each key class of application, including biomechanics
* Offers a rigorous mechanical and microstructure perspective, plus a computer based chapter: Essential for engineers and designers alike.

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2楼2009-06-03 01:22:25
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protein2008

至尊木虫 (知名作家)

Bio-Based Polymers and Composites





Richard Wool, X. Susan Sun, "Bio-Based Polymers and Composites"
Academic Press | 2005-07-19 | ISBN: 0127639527 | 640 pages | PDF | 62 MB

Bio-Based Polymers and Composites is the first book systematically describing the green engineering, chemistry and manufacture of biobased polymers and composites derived from plants.
This book gives a thorough introduction to bio-based material resources, availability, sustainability, biobased polymer formation, extraction and refining technologies, and the need for integrated research and multi-disciplinary working teams. It provides an in-depth description of adhesives, resins, plastics, and composites derived from plant oils, proteins, starches, and natural fibers in terms of structures, properties, manufacturing, and product performance. This is an excellent book for scientists, engineers, graduate students and industrial researchers in the field of bio-based materials.
* First book describing the utilization of crops to make high performance plastics, adhesives, and composites
* Interdisciplinary approach to the subject, integrating genetic engineering, plant science, food science, chemistry, physics, nano-technology, and composite manufacturing.
* Explains how to make green materials at low cost from soyoil, proteins, starch, natural fibers, recycled newspapers, chicken feathers and waste agricultural by-products.



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protein2008

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Applied Polymer Science: 21st Century



C. Craver, C. Carraher, "Applied Polymer Science: 21st Century"
Elsevier Science | 2000-12-01 | ISBN: 0080434177 | 1072 pages | PDF | 51,5 MB

The 75th Anniversary Celebration of the Division of Polymeric Materials: Science and Engineering of the American Chemical Society, in 1999 sparked this third edition of Applied Polymer Science with emphasis on the developments of the last few years and a serious look at the challenges and expectations of the 21st Century.
This book is divided into six sections, each with an Associate Editor responsible for the contents with the group of Associate Editors acting as a board to interweave and interconnect various topics and to insure complete coverage. These areas represent both traditional areas and emerging areas, but always with coverage that is timely. The areas and associated chapters represent vistas where PMSE and its members have made and are continuing to make vital contributions. The authors are leaders in their fields and have graciously donated their efforts to encourage the scientists of the next 75 years to further contribute to the well being of the society in which we all live.
Synthesis, characterization, and application are three of the legs that hold up a steady table. The fourth is creativity. Each of the three strong legs are present in this book with creativity present as the authors were asked to look forward in predicting areas in need of work and potential applications. The book begins with an introductory history chapter introducing readers to PMSE. The second chapter introduces the very basic science, terms and concepts critical to polymer science and technology. Sections two, three and four focus on application areas emphasizing emerging trends and applications. Section five emphasizes the essential areas of characterization. Section six contains chapters focusing of the synthesis of the materials.

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