Stacked Polymers And Molecules
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Stacked Polymers and Molecules
Author | : Tamaki Nakano |
Publsiher | : Springer Science & Business Media |
Total Pages | : 270 |
Release | : 2013-11-18 |
Genre | : Technology & Engineering |
ISBN | : 9784431541295 |
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This book covers broad aspects of the chemistry of π-stacked polymers and low-molecular-weight molecules, from synthesis through theory. It is intended for graduate students and researchers in academia and industry and consists of chapters written by renowned scientists who have made significant contributions to this field in the past decade. π-Stacked polymers and low-molecular-weight molecules are expected to replace main-chain conjugated polymers such as polyacetylenes and polythiophenes as organic conducting and energy-transferring substances that are important as materials for photo-electronic applications. π-Stacked polymers and molecules have significant advantages over main-chain conjugated polymers, i.e., high solubility in solvents, large freedom in molecular design, and colorless nature.
Stacked Polymers and Molecules
Author | : Tamaki Nakano |
Publsiher | : Springer |
Total Pages | : 0 |
Release | : 2013-12-04 |
Genre | : Technology & Engineering |
ISBN | : 4431541284 |
Download Stacked Polymers and Molecules Book in PDF, Epub and Kindle
This book covers broad aspects of the chemistry of π-stacked polymers and low-molecular-weight molecules, from synthesis through theory. It is intended for graduate students and researchers in academia and industry and consists of chapters written by renowned scientists who have made significant contributions to this field in the past decade. π-Stacked polymers and low-molecular-weight molecules are expected to replace main-chain conjugated polymers such as polyacetylenes and polythiophenes as organic conducting and energy-transferring substances that are important as materials for photo-electronic applications. π-Stacked polymers and molecules have significant advantages over main-chain conjugated polymers, i.e., high solubility in solvents, large freedom in molecular design, and colorless nature.
The Science of Polymer Molecules
Author | : Richard H. Boyd,Paul J. Phillips |
Publsiher | : Cambridge University Press |
Total Pages | : 436 |
Release | : 1993 |
Genre | : Science |
ISBN | : 0521565081 |
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An introduction concerning the synthesis, structure and properties of the individual molecules constituting polymeric materials.
Conjugated Polymer And Molecular Interfaces
Author | : William R. Salaneck,Kazuhiko Seki,Antoine Kahn,Jean-Jacques Pireaux |
Publsiher | : CRC Press |
Total Pages | : 896 |
Release | : 2001-10-18 |
Genre | : Science |
ISBN | : 0203910877 |
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Defines the state-of-the-art in interface science for electronic applications of organic materials. Updates understanding of the foundaiton of interfacial properties. Describes novel electronic devices created from conjugated polymers and organic molecular solids.
Polymer Based Advanced Functional Composites for Optoelectronic and Energy Applications
Author | : Nithin Kundachira Subramani,M.R. Siddaramaiah,Joong Hee Lee |
Publsiher | : Elsevier |
Total Pages | : 376 |
Release | : 2021-05-28 |
Genre | : Technology & Engineering |
ISBN | : 9780128185094 |
Download Polymer Based Advanced Functional Composites for Optoelectronic and Energy Applications Book in PDF, Epub and Kindle
Polymer-Based Advanced Functional Composites for Optoelectronic and Energy Applications explains how polymer-based smart composites and nanocomposites can be prepared and utilized for novel optical, sensor and energy-related applications. The book begins with an introductory section on the fundamentals of smart polymer composites, including structure-property relationships and conjugated polymers. Other sections examine optical applications, including the use of polymer-based smart composites for luminescent solar concentrators, electro-chromic applications, light conversion applications, ultraviolet shielding applications, LED encapsulation applications, sensor applications, including gas-sensing, strain sensing, robotics and tactile sensors, with final sections covering energy-related applications, including energy harvesting, conversion, storage, vibrational energy harvesting, and more. This is an essential guide for researchers, scientists and advanced students in smart polymers and materials, polymer science, composites, nanocomposites, electronics and materials science. It is also a valuable book for scientists, R&D professionals and engineers working with products that could utilize smart polymer composites. Provides thorough coverage of the latest pioneering research in the field of polymer-based smart composites Offers an applications-oriented approach, enabling the reader to understand state-of-the-art optical, sensor and energy applications Includes an in-depth introductory section, covering important aspects such as structure-property relationships and the role of conjugated polymers
Main Group Metal Coordination Polymers
Author | : Ali Morsali,Lida Hashemi |
Publsiher | : John Wiley & Sons |
Total Pages | : 272 |
Release | : 2017-02-03 |
Genre | : Science |
ISBN | : 9781119370758 |
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Coordination polymer is a general term used to indicate an infinite array composed of metal ions which are bridged by certain ligands among them. This incorporates a wide range of architectures including simple one-dimensional chains with small ligands to large mesoporous frameworks. Generally, the formation process proceeds automatically and, therefore, is called a self-assembly process. In general, the type and topology of the product generated from the self-assembly of inorganic metal nodes and organic spacers depend on the functionality of the ligand and valences and the geometric needs of the metal ions used. In this book the authors explain main group metal coordination polymer in bulk and nano size with some of their application, synthesis method and etc, The properties of these efficient materials are described at length including magnetism (long-range ordering, spin crossover), porosity (gas storage, ion and guest exchange), non-linear optical activity, chiral networks, reactive networks, heterogeneous catalysis, luminescence, multifunctional materials and other properties.
Polymer Structure Characterization
Author | : Richard Arthur Pethrick |
Publsiher | : Royal Society of Chemistry |
Total Pages | : 353 |
Release | : 2007 |
Genre | : Science |
ISBN | : 9780854044665 |
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This book brings together, in a logical fashion, the way in which molecular interactions lead to the observedmorphologies in crystalline organic materials and polymers. It is arranged into self contained chapters on various aspects of materials science and includes discussions of topics such as crystal growth, polymer morphology, amorphous glassy materials, polymer phase separation and structure and organisation in materials. The main feature of this title is that, within a single volume, a range of topics is covered which normally would only be found in a number of separate volumes. It is aimed at polymer - materials scientists but will also be of interest to chemists and physics students interested in the properties of organic materials.
Nonlinear Optics of Organic Molecules and Polymers
Author | : Hari Singh Nalwa,Seizo Miyata |
Publsiher | : CRC Press |
Total Pages | : 898 |
Release | : 1996-12-20 |
Genre | : Technology & Engineering |
ISBN | : 0849389232 |
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This book presents an excellent overview of the exciting new advances in nonlinear optical (NLO) materials and their applications in emerging photonics technologies. It is the first reference source available to cover every NLO material published through 1995! All theoretical approaches, measurement techniques, materials, technologies, and applications are covered. With more than 1,800 bibliographic citations, 324 figures, 218 tables, and 812 equations, this book is an invaluable reference source for graduate and undergraduate students, researchers, scientists and engineers working in academia and industries in chemistry, solid-state physics, materials science, optical and polymer engineering, and computational science.