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Multifunctional Conducting Molecular Materials

Multifunctional Conducting Molecular Materials
Author: Gunzi Saito
Publisher: Royal Society of Chemistry
Total Pages: 319
Release: 2007
Genre: Science
ISBN: 0854044965

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The use of conducting molecular materials is a rapidly developing, multidisciplinary field of research, offering a wide variety of possibilities for the future. It is of particular relevance to nano fabrication and technology because it offers high density, small size integrated and multifunctional properties that can be fabricated under mild conditions. Multifunctional Conducting Molecular Materials covers a wide range of topics including: molecular conductors and superconductors; design and synthesis of functional molecular materials; organic/inorganic hybrids and photoinduced phenomena; fullerenes, nanotubes and other related nano materials. The book concludes with a look at integration and functionalities of molecular materials such as organic field effect transistors (OFET). This high level book is ideal for researchers in both industry and academia who are interested in this new and exciting field.


Multifunctional Molecular Materials

Multifunctional Molecular Materials
Author: Lahcene Ouahab
Publisher: CRC Press
Total Pages: 316
Release: 2013-01-24
Genre: Medical
ISBN: 9814364290

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This book provides a comprehensive overview on multifunctional molecular materials that involve coexistence or interplay or synergy between multiple physical properties focusing on electrical conductivity, magnetism, single-molecule magnets behavior, chirality, spin crossover, and luminescence. The book’s coverage ranges from transition metals and lanthanide coordination complexes to genuine organic materials. The book also discusses some potentialities of applications of these materials in molecule-based devices.


Materials Research to Meet 21st-Century Defense Needs

Materials Research to Meet 21st-Century Defense Needs
Author: National Research Council
Publisher: National Academies Press
Total Pages: 660
Release: 2003-03-25
Genre: Technology & Engineering
ISBN: 0309087007

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In order to achieve the revolutionary new defense capabilities offered by materials science and engineering, innovative management to reduce the risks associated with translating research results will be needed along with the R&D. While payoff is expected to be high from the promising areas of materials research, many of the benefits are likely to be evolutionary. Nevertheless, failure to invest in more speculative areas of research could lead to undesired technological surprises. Basic research in physics, chemistry, biology, and materials science will provide the seeds for potentially revolutionary technologies later in the 21st century.


Synthesis, Structures, Photophysics and Optoelectronic Properties of Metalated Molecular Materials Derived from Multifunctional Chromophores

Synthesis, Structures, Photophysics and Optoelectronic Properties of Metalated Molecular Materials Derived from Multifunctional Chromophores
Author: Ze He
Publisher:
Total Pages: 360
Release: 2006
Genre: Electrochemistry
ISBN: 9781109899870

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Chapters 6 and 7 present the concluding remarks and the experimental details of the work presented in Chapters 2--5.


Nano-sized Multifunctional Materials

Nano-sized Multifunctional Materials
Author:
Publisher: Elsevier
Total Pages: 292
Release: 2018-11-20
Genre: Science
ISBN: 0128139358

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Nano-sized Multifunctional Materials: Synthesis, Properties and Applications explores how materials can be down-scaled to nanometer-size in order to tailor and control properties. These advanced, low-dimensional materials, ranging from quantum dots and nanoparticles, to ultra-thin films develop multifunctional properties. As well as demonstrating how down-scaling to nano-size can make materials multifunctional, chapters also show how this technology can be applied in electronics, medicine, energy and in the environment. This fresh approach in materials research will provide a valuable resource for materials scientists, materials engineers, chemists, physicists and bioengineers who want to learn more on the special properties of nano-sized materials. Outlines the major synthesis chemical process and problems of advanced nanomaterials Shows how multifunctional nanomaterials can be practically used in biomedical area, nanomedicine, and in the treatment of pollutants Demonstrates how the properties of a variety of materials can be engineered by downscaling them to nano size


Functional Molecular Materials

Functional Molecular Materials
Author: Matteo Atzori
Publisher: CRC Press
Total Pages: 400
Release: 2018-04-17
Genre: Science
ISBN: 1351233653

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The field of molecular materials represents an exciting playground for the design, tailoring, and combination of chemical building blocks as carriers of physical properties and aims at the understanding and development of novel functional molecular devices. Within this extraordinarily widespread framework, the realization of materials with the desired functionalities can only be achieved through a rational design strategy based on a solid understanding of the chemical and physical features of each constituting building block. This book provides a general overview of molecular materials, discussing their key features in a simple and organic way by focusing more on basic concepts rather than on specialized descriptions, in order to supply the non-expert reader with the immediate fundamental tools and hints to understand and develop research in this field. With this view, it is a step-by-step guide toward the preparation of functional molecular materials, where the knowledge and understanding so far attained by the scientific community through the investigation of significant archetypical examples is deconstructed down to the fundamental basis and then presented in reverse, from the base to the top.


Multifunctional Materials Based on Self Assembly of Molecular Nanostructures

Multifunctional Materials Based on Self Assembly of Molecular Nanostructures
Author:
Publisher:
Total Pages: 0
Release: 2001
Genre:
ISBN:

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In this program we developed an important class of multifunctional and self assembling materials based on the use of triblock molecular structures that had both luminescent chromophores and dipole moments. The objective was to integrate self assembly, encoded in the triblock structure, luminescent properties, and the properties characteristic of materials that have macroscopically polar structure. Our research over the past few years demonstrated self assembly in these materials with the formation of layered nanostructures measuring a few nanometers, and also photoluminescent behavior in the solid state of these materials. We also found these materials form thin films on substrates such as glass that exhibit spontaneous second harmonic generation when probed with infrared laser beams. An important milestone in the program was the discovery of piezoelectricity in the self assembling materials containing triblock molecules composed of oligostyrene, oligoisoprene, and biphenyl ester-phenylene vinylene blocks. The experiments were performed in a Nomarski interferometer, and a piezoelectric coefficient of 0.028 pm/volt was observed in thin films that were never exposed to an electric field. We concluded from this observation that the observed signal is the result of spontaneous polar organization by self assembly. The multifunctional materials were also found to have the unusual property of having almost identical absorption spectra in both dilute solution as well as the solid state with only a relatively small blue shift of 9 nm. A narrow red shifted emission was observed also which is not common in similar materials without self assembling properties. We believe this behavior is connected to the nanostructured nature of these materials. Finally, the program started an investigation of materials that could self assemble in aqueous media and were therefore designed to have amphiphilic nature.


Functional Molecular Materials

Functional Molecular Materials
Author: Matteo Atzori
Publisher: CRC Press
Total Pages: 372
Release: 2018-04-17
Genre: Science
ISBN: 1351233645

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The field of molecular materials represents an exciting playground for the design, tailoring, and combination of chemical building blocks as carriers of physical properties and aims at the understanding and development of novel functional molecular devices. Within this extraordinarily widespread framework, the realization of materials with the desired functionalities can only be achieved through a rational design strategy based on a solid understanding of the chemical and physical features of each constituting building block. This book provides a general overview of molecular materials, discussing their key features in a simple and organic way by focusing more on basic concepts rather than on specialized descriptions, in order to supply the non-expert reader with the immediate fundamental tools and hints to understand and develop research in this field. With this view, it is a step-by-step guide toward the preparation of functional molecular materials, where the knowledge and understanding so far attained by the scientific community through the investigation of significant archetypical examples is deconstructed down to the fundamental basis and then presented in reverse, from the base to the top.


Lanthanide-Based Multifunctional Materials

Lanthanide-Based Multifunctional Materials
Author:
Publisher: Elsevier
Total Pages: 492
Release: 2018-06-26
Genre: Technology & Engineering
ISBN: 0128138416

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Lanthanide-Based Multifunctional Materials: From OLEDs to SIMs serves as a comprehensive and state-of the art review on these promising compounds, delivering a panorama of their extensive and rapidly growing applications. After an introductory chapter on the theoretical description of the optical and magnetic behaviour of lanthanides and on the prediction of their properties by ab-initio methods, four chapters are devoted to lanthanide-based OLEDs, including the latest trends in visible emitters, the emerging field of near infrared emitters and the first achievements attained in the field of chiral OLEDs. The use of lanthanide complexes as molecular magnets spreads over another two chapters, which explain the evolution of 4f-elements-based SIMs and the most recent advances in heterometallic 3d–4f SMMs. Other very active research areas are covered in the remaining five chapters, dedicated to lanthanide-doped germanate and tellurite glasses, luminescent materials for up-conversion, luminescent thermosensors, multimodal imaging and therapeutic agents, and chemosensors. The book is aimed at academic and industrial researchers, undergraduates and postgraduates alike, and is of particular interest for the Materials Science, Applied Physics and Applied Chemistry communities. Includes the latest progress on lanthanide-based materials and their applications (in OLEDs, SIMs, doped matrices, up-conversion, thermosensors, theragnostics and chemosensors) Presents basic and applied aspects of the Physics and Chemistry of lanthanide compounds, as well as future lines of action Covers successful examples of devices and proofs-of-concept and provides guidelines for the rational design of new materials