E-Book, Englisch, 588 Seiten, Web PDF
Cadenhead / Danielli Progress in Surface and Membrane Science
1. Auflage 2013
ISBN: 978-1-4832-1978-3
Verlag: Elsevier Science & Techn.
Format: PDF
Kopierschutz: 1 - PDF Watermark
Volume 12
E-Book, Englisch, 588 Seiten, Web PDF
ISBN: 978-1-4832-1978-3
Verlag: Elsevier Science & Techn.
Format: PDF
Kopierschutz: 1 - PDF Watermark
Progress in Surface and Membrane Science, Volume 12 covers the advances in the study of surface and membrane science. The book discusses the topographical differentiation of the cell surface; the NMR studies of model biological membrane system; and an irreversible thermodynamic approach to energy coupling in mitochondria and chloroplasts. The text also describes water at surfaces; the nature of microemulsions; and the energy principle in the stability of interfaces. Biochemists, physicists, chemical engineers, and people involved in surface and coatings research will find the book invaluable.
Autoren/Hrsg.
Weitere Infos & Material
1;Front Cover;1
2;Progress in Surface and Membrane Science;4
3;Copyright Page;5
4;Table of Contents;6
5;Contributors;10
6;Contents of Recent Volumes;12
7;CHAPTER 1. TOPOLOGICAL DIFFERENTIATION OF THE CELL SURFACE;16
7.1;I. INTRODUCTION;16
7.2;II. MORPHOLOGICAL TOPOGRAPHY OF THE CELL SURFACE;27
7.3;III. MOLECULAR TOPOGRAPHY OF THE CELL SURFACE;68
7.4;IV. REGULATION OF THE TOPOGRAPHY OF THE CELL SURFACE;110
7.5;V. CONCLUDING REMARKS;161
7.6;REFERENCES;161
8;CHAPTER 2. NMR STUDIES OF MODEL BIOLOGICAL MEMBRANE SYSTEMS: UNSONICATED SURFACTANT-WATER DISPERSIONS;198
8.1;I. INTRODUCTION;198
8.2;II. NMR LINEWIDTH STUDIES OF SURFACTANT MULTILAYERS;200
8.3;III. NMR RELAXATION STUDIES OF MULTILAYER DISPERSIONS;210
8.4;IV. DIFFUSION STUDIES OF AMPHIPHILIC MOLECULES IN MULTILAYER DISPERSIONS;222
8.5;V. NMR INVESTIGATIONS OF WATER AND IONS ASSOCIATED WITH SURFACTANTS;227
8.6;VI. HIGH RESOLUTION NMR STUDIES OF LECITHIN-WATER MULTILAYER DISPERSIONS;238
8.7;VII. SUMMARY AND DISCUSSION;242
8.8;REFERENCES;251
9;CHAPTER 3. AN IRREVERSIBLE THERMODYNAMIC APPROACH TO ENERGY COUPLING IN MITOCHONDRIA AND CHLOROPLASTS;260
9.1;I. ENERGY CONVERSION IN MITOCHONDRIA AND CHLOROPLASTS;260
9.2;II. PHENOMENOLOGICAL DESCRIPTION OF OXIDATIVE PHOSPHORYLATION AND PHOTOPHOSPHORYLATION;280
9.3;III. THERMODYNAMIC CRITERIA FOR MODELS OF OXIDATIVE PHOSPHORYLATION AND PHOTOPHOSPHORYLATION;326
9.4;REFERENCES;337
10;CHAPTER 4. WATER AT SURFACES;342
10.1;I. INTRODUCTION;342
10.2;II. PHYSICAL METHODS;343
10.3;III. OXIDES;347
10.4;IV. SILICA AND SILICATE SYSTEMS;352
10.5;V. METALS;360
10.6;VI. CARBOHYDRATES;364
10.7;VII. NUCLEIC ACIDS;378
10.8;VIII. PROTEINS;390
10.9;ACKNOWLEDGMENTS;406
10.10;REFERENCES;406
11;CHAPTER 5. THE NATURE OF MICROEMULSIONS;420
11.1;I. INTRODUCTION;420
11.2;II. CHARACTERIZATION OF MICROEMULSIONS;423
11.3;III. THEORETICAL CONSIDERATIONS;457
11.4;IV. CONCLUSIONS;467
11.5;ADDENDUM;468
11.6;REFERENCES;482
12;CHAPTER 6. THE ENERGY PRINCIPLE IN THE STABILITY OF INTERFACES;494
12.1;INTRODUCTION;494
12.2;GENERAL STABILITY PROBLEM AND SCOPE OF ARTICLE;499
12.3;MINIMAL SURFACE PROBLEMS;516
12.4;SINGLE FREE INTERFACES WITH VOLUME CONSTRAINT;538
12.5;STABILITY OF MULTIPLE INTERFACE SYSTEMS;554
12.6;MISCELLANEOUS PROBLEMS AND METHODS;575
12.7;STOP-PRESS ADDENDUM;576
12.8;REFERENCES;579
13;INDEX;584




