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Hansen Solubility Parameters: A User's Handbook, Second Edition

Autor Charles M. Hansen
en Limba Engleză Hardback – 15 iun 2007
Hansen solubility parameters (HSPs) are used to predict molecular affinities, solubility, and solubility-related phenomena. Revised and updated throughout, Hansen Solubility Parameters: A User's Handbook, Second Edition features the three Hansen solubility parameters for over 1200 chemicals and correlations for over 400 materials including polymers, inorganic salts, and biological materials. To update his groundbreaking handbook with the latest advances and perspectives, Charles M. Hansen has invited five renowned experts to share their work, theories, and practical applications involving HSPs. New discussions include a new statistical thermodynamics approach for confirming existing HSPs and how they fit into other thermodynamic theories for polymer solutions. Entirely new chapters examine the prediction of environmental stress cracking as well as absorption and diffusion in polymers. Highlighting recent findings on interactions with DNA, the treatment of biological materials also includes skin tissue, proteins, natural fibers, and cholesterol. The book also covers the latest applications of HSPs, such as ozone-safe “designer” solvents, protective clothing, drug delivery systems, and petroleum applications.
Presenting a comprehensive survey of the theoretical and practical aspects of HSPs, Hansen Solubility Parameters, Second Edition concludes with a detailed discussion on the necessary research, future directions, and potential applications for which HSPs can provide a useful means of prediction in areas such as biological materials, controlled release applications, nanotechnology, and self-assembly.
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Specificații

ISBN-13: 9780849372483
ISBN-10: 0849372488
Pagini: 544
Ilustrații: 200 equations; 99 Tables, black and white; 99 Illustrations, black and white
Dimensiuni: 178 x 254 x 34 mm
Greutate: 1.17 kg
Ediția:Revizuită
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States

Public țintă

Professional

Cuprins

Solubility Parameters: An Introduction. Theory: The Prigogine Corresponding States Theory, the χ12 Interaction Parameter, and the Hansen Solubility Parameters. Statistical Thermodynamic Calculations of the Hydrogen Bonding, Dipolar, and Dispersion Solubility Parameters. Hansen Solubility Parameters (HSP) in Thermodynamic Models for Polymer Solutions. Methods of Characterization: Polymers. Methods of Characterization: Surfaces. Methods of Characterization for Pigments, Fillers, and Fibers. Applications: Coatings and Other Filled Polymer Systems. Hansen Solubility Parameters of Asphalt, Bitumen, and Crude Oils. Determination of Hansen Solubility Parameter Values for Carbon Dioxide. Use of Hansen Solubility Parameters to identify Cleaning Applications for “Designer” Solvents. Applications: Chemical Resistance. Applications: Barrier Polymers. Applications: Environmental Stress Cracking in Polymers. Hansen Solubility Parameters: Biological Materials. Absorption and Diffusion in Polymers. Applications: Safety and Environment. The Future. Appendices. Index.

Recenzii

Hansen (retired from the FORCE Institute in Broenby Denmark) describes the techniques he developed that allow correlations and systemic comparisons in the science of polymer solvents. Most commonly used in the coatings industry for the selection of solvents, the techniques assess polymer solubility, swelling, permeation, surface wetting, and the solubility of organic salts. The approach not only quantitatively describes hydrogen bonding and polar bonding in many types of systems, but in fact agrees with and extends the very general Prigogine theory. The second edition adds two chapters on environmental stress cracking and absorption/diffusion in polymers.”
SciTech Book News, December 2007

Descriere

In this new edition, Charles M. Hansen invites five renowned experts to share their innovative work on novel topics such as using statistical thermodynamics to confirm existing HSPs, reconciling HSP with other thermodynamic theories, predicting the behavior of carbon dioxide, environmental stress cracking, absorption and diffusion in polymers, and other insight on future applications in biological materials, controlled release, nanotechnology, and self-assembly. The book highlights recent findings on interactions with DNA, and other novel applications of HSPs, such as ozone-safe solvents, protective clothing, drug delivery systems, and petroleum applications.