PHYSICAL PROPERTIES OF POLYMERS HANDBOOK
Ouvrage 1-56396-295-0 : PHYSICAL PROPERTIES OF POLYMERS HANDBOOK
This handbook offers concise information on the
properties of polymeric materials, particularly those
most relevant to physical chemistry and chemical
physics. Topics addressed include structure, theory,
thermodynamic properties, spectroscopy, mechanical
properties, crystallinity and morphology,
electro-optical and magnetic properties, and
responses to radiation, heat, and chemical agents.
Noteworthy is the inclusion of topics such as
computational parameters, liquid crystalline polymers,
medical applications, microlithography,
pyrolyzability, electrical conductivity, nonlinear optical
properties, and electroluminescence.
Table of Contents
Contributors
Series Preface
Preface
1
Chain Structures
3
2
Names, Acronyms, Classes, and Structures
of Some Important
Polymers
29
3
Rotational Isomeric State Models and
Results
39
4
Computational Parameters
55
5
Theoretical Models for Polymer Chains
61
6
Scaling, Exponents, and Fractal
Dimensions
71
7
Densities, Coefficients of Thermal
Expansion, and Compressibilities of
Amorphous Polymers
81
8
Thermodynamic Properties of Proteins
91
9
Heat Capacities of Polymers
101
10
Thermal Conductivity
111
11
Thermodynamic Quantities Governing
Melting
119
12
The Glass Temperature
139
13
Sub-T[subscript g] Transitions
161
14
Polymer-Solvent Interaction Parameter
[Chi]
177
15
Theta Temperatures
197
16
Solubility Parameters
227
17
Mark - Houwink - Staudinger - Sakurada
Constants
241
18
Polymers and Supercritical Fluids
249
19
Thermodynamics of Polymer Blends
257
20
NMR Spectroscopy of Polymers
271
21
Group Frequency Assignments for Major
Infrared Bands Observed in
Common Synthetic Polymers
291
22
Neutron and X-Ray Scattering
299
23
Mechanical Properties
313
24
Chain Dimensions and Entanglement
Spacings
335
25
Temperature Dependences of the
Viscoelastic Response of Polymer
Systems
341
26
Adhesives
363
27
Some Mechanical Properties of Typical
Polymer-Based Composites
371
28
Gels
379
29
Densities of Amorphous and Crystalline
Polymers
401
30
Unit Cell Information on Some Important
Polymers
409
31
Crystallization Kinetics of Polymers
417
32
Morphologies of Block Copolymers
427
33
Polymer Liquid Crystals and Their Blends
435
34
Conducting Polymers: Electrical
Conductivity
453
35
Conjugated Polymer Electroluminescence
479
36
Dielectric Relaxation Parameters for
Polymers
489
37
Magnetic, Piezoelectric, Pyroelectric,
and Ferroelectric Properties of
Polymers
507
38
Nonlinear Optical Properties of Polymers
515
39
Refractive Index, Stress-Optical
Coefficient, and Optical Configuration
Parameter of Polymers
535
40
Ultraviolet Radiation and Polymers
547
41
Effects of Electron Beam and
[gamma]-Irradiation on Polymeric
Materials
557
42
Flammability
577
43
Thermal-Oxidative Stability and
Degradation of Polymers
605
44
Synthetic Biodegradable Polymers for
Medical Applications
615
45
Biodegradability of Polymers
625
46
Properties of Photoresist Polymers
637
47
Pyrolyzability of Preceramic Polymers
643
48
Surface and Interfacial Properties
669
49
Acoustic Properties
677
50
Permeability of Polymers to Gases and
Vapors
687
51
Definitions
703
52
Units and Conversion Factors
709
Subject Index
715
Auteur : MARK
Editeur : INSTITUTE OF PHYSICS
Nombre de pages : 722
Date de publication : 01 1996
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