Spin-Crossover Materials

Spin-Crossover Materials
Title Spin-Crossover Materials PDF eBook
Author Malcolm A. Halcrow
Publisher John Wiley & Sons
Pages 729
Release 2013-01-07
Genre Science
ISBN 1118519310

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The phenomenon of spin-crossover has a large impact on the physical properties of a solid material, including its colour, magnetic moment, and electrical resistance. Some materials also show a structural phase change during the transition. Several practical applications of spin-crossover materials have been demonstrated including display and memory devices, electrical and electroluminescent devices, and MRI contrast agents. Switchable liquid crystals, nanoparticles, and thin films of spin-crossover materials have also been achieved. Spin-Crossover Materials: Properties and Applications presents a comprehensivesurvey of recent developments in spin-crossover research, highlighting the multidisciplinary nature of this rapidly expanding field. Following an introductory chapter which describes the spin-crossover phenomenon and historical development of the field, the book goes on to cover a wide range of topics including Spin-crossover in mononuclear, polynuclear and polymeric complexes Structure: function relationships in molecular spin-crossover materials Charge-transfer-induced spin-transitions Reversible spin-pairing in crystalline organic radicals Spin-state switching in solution Spin-crossover compounds in multifunctional switchable materials and nanotechnology Physical and theoretical methods for studying spin-crossover materials Spin-Crossover Materials: Properties and Applications is a valuable resource for academic researchers working in the field of spin-crossover materials and topics related to crystal engineering, solid state chemistry and physics, and molecular materials. Postgraduate students will also find this book useful as a comprehensive introduction to the field.

Spin-Crossover Complexes

Spin-Crossover Complexes
Title Spin-Crossover Complexes PDF eBook
Author Kazuyuki Takahashi MDPI
Publisher MDPI
Pages 207
Release 2018-06-26
Genre Science
ISBN 3038428256

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This book is a printed edition of the Special Issue "Spin-Crossover Complexes" that was published in Inorganics

Synthesis and Applications of New Spin Crossover Compounds

Synthesis and Applications of New Spin Crossover Compounds
Title Synthesis and Applications of New Spin Crossover Compounds PDF eBook
Author Takafumi Kitazawa
Publisher MDPI
Pages 254
Release 2019-10-11
Genre Science
ISBN 303921361X

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The crystal chemistry of spin crossover (SCO) behavior in coordination compounds can potentially be in association with smart materials—promising materials for applications as components of memory devices, displays, sensors and mechanical devices and, especially, actuators, such as artificial muscles. This Special Issue is devoted to various aspects of SCO and related research, comprising 18 interesting original papers on valuable and important SCO topics. Significant and fundamental scientific attention has been focused on the SCO phenomena in a wide research range of fields of fundamental chemical and physical and related sciences, containing the interdisciplinary regions of chemical and physical sciences related to the SCO phenomena. Coordination materials with bistable systems between the LS and the HS states are usually triggered by external stimuli, such as temperature, light, pressure, guest molecule inclusion, soft X-ray, and nuclear decay. Since the first Hofmann-like spin crossover (SCO) behavior in {Fe(py)2[Ni(CN)4]}n (py = pyridine) was demonstrated, this crystal chemistry motif has been frequently used to design Fe(II) SCO materials to enable determination of the correlations between structural features and magnetic properties.

Magnetism: A Supramolecular Function

Magnetism: A Supramolecular Function
Title Magnetism: A Supramolecular Function PDF eBook
Author O. Kahn
Publisher Springer Science & Business Media
Pages 678
Release 1996-07-31
Genre Science
ISBN 9780792341536

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Molecular magnetism is a new field of research dealing with the synthesis and study of the physical properties of molecular assemblies involving open-shell units. It is essentially interdisciplinary, joining together organic, organometallic and inorganic chemists, as well as theoreticians, physicists and materials scientists. At the core of research into molecular magnetism lie design and synthesis of new molecular assemblies exhibiting bulk properties such as long-range magnetic ordering or bistability with an hysteresis effect, which confers a memory effect on the system. In such terms, magnetism may be considered a supramolecular function. The first eight contributions to this volume present the state of the art in organic supramolecular chemistry, emphasising interlocked systems and molecular trees. The following six articles are devoted to molecular materials constructed from organic radicals and transition metal units. Molecular bistability is then focused on, followed by metal-organic and coordination magnetic materials. A new approach to nano-sized particles closes the work.

Spin Crossover in Transition Metal Compounds I

Spin Crossover in Transition Metal Compounds I
Title Spin Crossover in Transition Metal Compounds I PDF eBook
Author Philipp Gütlich
Publisher Springer Science & Business Media
Pages 640
Release 2004-05-12
Genre Science
ISBN 9783540403944

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With contributions by numerous experts

Spin-Crossover Complexes

Spin-Crossover Complexes
Title Spin-Crossover Complexes PDF eBook
Author Kazuyuki Takahashi
Publisher
Pages
Release 2018
Genre
ISBN 9783038428268

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Transition Metals in Coordination Environments

Transition Metals in Coordination Environments
Title Transition Metals in Coordination Environments PDF eBook
Author Ewa Broclawik
Publisher Springer
Pages 540
Release 2019-03-16
Genre Science
ISBN 3030117146

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This book focuses on the electronic properties of transition metals in coordination environments. These properties are responsible for the unique and intricate activity of transition metal sites in bio- and inorganic catalysis, but also pose challenges for both theoretical and experimental studies. Written by an international group of recognized experts, the book reviews recent advances in computational modeling and discusses their interplay using experiments. It covers a broad range of topics, including advanced computational methods for transition metal systems; spectroscopic, electrochemical and catalytic properties of transition metals in coordination environments; metalloenzymes and biomimetic compounds; and spin-related phenomena. As such, the book offers an invaluable resource for all researchers and postgraduate students interested in both fundamental and application-oriented research in the field of transition metal systems.