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Supermolecular Polymers 2nd Edition Alberto Ciferri

  • SKU: BELL-1208278
Supermolecular Polymers 2nd Edition Alberto Ciferri
$ 31.00 $ 45.00 (-31%)

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Supermolecular Polymers 2nd Edition Alberto Ciferri instant download after payment.

Publisher: CRC Press
File Extension: PDF
File size: 20.47 MB
Pages: 750
Author: Alberto Ciferri
ISBN: 9780824723316, 0824723317
Language: English
Year: 2005
Edition: 2

Product desciption

Supermolecular Polymers 2nd Edition Alberto Ciferri by Alberto Ciferri 9780824723316, 0824723317 instant download after payment.

Supramolecular Polymers, Second Edition details assembly processes and structure-function correlation in natural and synthetic self-assembling materials, focusing on developments occurred over the past five years.
The book highlights developments in the synthesis of complex structures, chemical design principles, and theoretical models of growth processes resulting in an increasingly accurate prediction of stability, degree of polymerization, and shape of various assemblies. It focuses on the rich variety of properties, functions, and applications of self-assembling supramolecular polymers. Supramolecular Polymers, Second Edition ties together potential applications such as those of nanostructures with dynamic-combinatorial-adaptive self-healing features, opto-electronic devices, supramolecular amphiphiles, hydrogels, organic/inorganic nanocomposites, molecular biosensors, molecular imprinting, molecular engines, templates for superlattices with prescribed symmetry. Several chapters of the first edition have been updated or rewritten, and an equal number of new chapters have been added. More than 500 drawings, photographs, micrographs, equations, and tables enhance and reinforce essential concepts presented in the book.
Authored by an expert in polymer mechanics, biopolymers, liquid crystals, and supramolecular assemblies, Supramolecular Polymers, Second Edition emphasizes fundamental principles at the basis of bottom-up nanotechnology, chemical design strategies, and exciting applications for various self-assembling materials for a unified and cutting-edge account of the field.

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