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Concise Encyclopedia Of High Performance Silicones at Meripustak

Concise Encyclopedia Of High Performance Silicones by Tiwari and A and Soucek and M D , John Wiley

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General Information  
Author(s)Tiwari and A and Soucek and M D
PublisherJohn Wiley
ISBN9781118469651
Pages434
BindingHardcover
LanguageEnglish
Publish YearMay 2014

Description

John Wiley Concise Encyclopedia Of High Performance Silicones by Tiwari and A and Soucek and M D

The Concise Encyclopedia of High Performance Silicones contains critical information on silicones (i.e., polysiloxanes) that are commercially available for high performance applications. Although voluminous literature is available to readers, vital information is hard to find as it remains scattered. This encyclopedia is compiled for a broad readership and contains carefully screened chapters on cutting edge technologies available in the field of silicones. Divided into three sections Synthesis Methodologies of Silicones; Characterizing the Silicones; and the Applications of Silicones the book starts by explaining various innovative techniques adopted by chemists for the synthesis of novel silicone materials. The featured examples include the syntheses of biologically safer silicones through the use of enzymes; the use of silicone modified epoxy coatings in controlling the corrosion and biofouling activities on metal alloys; the use of smart silicone nanoparticles in paint and coating systems; the effect of irradiation on silicone chemistry; biocompatible silicones; and the use of polydimethylsiloxane in the preparation of microfluidic devices. The second section of the book helps readers in characterizing the silicones. A comprehensive review on the use of nuclear magnetic resonance (NMR) spectroscopy on silicones will assist in analyzing the synthesized silicones with different types of NMR techniques. The use of FTIR techniques on silicones will help readers in extracting the hard–to–find spectral assignments. Similarly, the chapters on thermal degradation and the behavior of silicones at high frequency are deeply informative. The knowledge of safety and toxicity aspects, mathematical modeling for drug delivery, and structure–property correlation in silicones will help readers select the material for specific applications. The last section explores current application areas of silicones. The use of silicones for soft electronics, contact lenses, membranes for separation technology, maxillofacial prosthetics, fiber optic–based chemical sensing, tissue engineering, and regenerative medicine is detailed in individual chapters. Finally, the use of silicone as microfluidic devices and biopharmaceutical containers is comprehensively described.



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