Self-Organization in Electrochemical Systems II

Self-Organization in Electrochemical Systems II

Author: Marek Orlik

Publisher: Springer Science & Business Media

Published: 2012-09-13

Total Pages: 463

ISBN-13: 364227627X

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This is the second of two volumes offering the very first comprehensive treatise of self-organization and non-linear dynamics in electrochemical systems. The first volume covers general principles of self-organization as well as temporal instabilities. The content of both volumes is organized so that each description of a particular electrochemical system is preceded by an introduction to basic concepts of nonlinear dynamics, in order to help the reader unfamiliar with this discipline to understand at least fundamental concepts and the methods of stability analysis. The presentation of the systems is not limited to laboratory models but stretches out to real-life objects and processes, including systems of biological importance, such as neurons in living matter. Marek Orlik presents a comprehensive and consistent survey of the field.


Self-Organization in Electrochemical Systems II

Self-Organization in Electrochemical Systems II

Author: Marek Orlik

Publisher: Springer Science & Business Media

Published: 2012-09-07

Total Pages: 463

ISBN-13: 3642276261

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This is the second of two volumes offering the very first comprehensive treatise of self-organization and non-linear dynamics in electrochemical systems. The first volume covers general principles of self-organization as well as temporal instabilities. The content of both volumes is organized so that each description of a particular electrochemical system is preceded by an introduction to basic concepts of nonlinear dynamics, in order to help the reader unfamiliar with this discipline to understand at least fundamental concepts and the methods of stability analysis. The presentation of the systems is not limited to laboratory models but stretches out to real-life objects and processes, including systems of biological importance, such as neurons in living matter. Marek Orlik presents a comprehensive and consistent survey of the field.


Self-Organization in Electrochemical Systems I

Self-Organization in Electrochemical Systems I

Author: Marek Orlik

Publisher: Springer Science & Business Media

Published: 2012-09-08

Total Pages: 544

ISBN-13: 3642276725

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This is the first of two volumes offering the very first comprehensive treatise of self-organization and non-linear dynamics in electrochemical systems. The second volume covers spatiotemporal patterns and the control of chaos. The content of both volumes is organized so that each description of a particular electrochemical system is preceded by an introduction to basic concepts of nonlinear dynamics, in order to help the reader unfamiliar with this discipline to understand at least fundamental concepts and the methods of stability analysis. The presentation of the systems is not limited to laboratory models but stretches out to real-life objects and processes, including systems of biological importance, such as neurons in living matter. Marek Orlik presents a comprehensive and consistent survey of the field.


Exploiting Magnets and Magnetic Fields in Electrochemical Systems and Devices

Exploiting Magnets and Magnetic Fields in Electrochemical Systems and Devices

Author: Hugh De Long

Publisher: The Electrochemical Society

Published: 2008-10

Total Pages: 63

ISBN-13: 1566776732

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The papers included in this issue of ECS Transactions were originally presented in the symposium ¿Exploiting Magnets and Magnetic Fields in Electrochemical Systems and Devices¿, held during the 213th meeting of The Electrochemical Society, in Phoenix, Arizona from May 18 to 23, 2008.


Nanostructured Materials in Electrochemistry

Nanostructured Materials in Electrochemistry

Author: Ali Eftekhari

Publisher: John Wiley & Sons

Published: 2008-06-25

Total Pages: 489

ISBN-13: 3527621512

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Providing the unique and vital link between the worlds of electrochemistry and nanomaterials, this reference and handbook covers advances in electrochemistry through the nanoscale control of electrode structures, as well as advances in nanotechnology through electrochemical synthesis strategies. It demonstrates how electrochemical methods are of great scientific and commercial interest due to their low cost and high efficiency, and includes the synthesis of nanowires, nanoparticles, nanoporous and layered nanomaterials of various compositions, as well as their applications -- ranging from superior electrode materials to energy storage, biosensors, and electroanalytical devices.


Molecular Nano Dynamics

Molecular Nano Dynamics

Author: Hiroshi Fukumura

Publisher: John Wiley & Sons

Published: 2009-09-09

Total Pages: 740

ISBN-13: 3527627839

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From artificial surfaces to living cells, Molecular Nano Dynamics, Vol. I and Vol. II explores more than 40 important methods for dynamic observation of the nanoscale. Edited by absolute science greats from Japan, this two-volume set covers all important aspects of this topic: nanoscale spectroscopy and characterization tools, nanostructure dynamics, single living cell dynamics, active surfaces, and single crystals. Destined to be the definitive reference work on nanoscale molecular dynamics and their observation for years to come, this is a must-have reference for chemists, physicists, physical chemists, theoretical chemists, and materials scientists.


Solid State Electrochemistry II

Solid State Electrochemistry II

Author: Vladislav V. Kharton

Publisher: John Wiley & Sons

Published: 2012-12-21

Total Pages: 576

ISBN-13: 3527635580

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The ideal addition to the companion volume on fundamentals, methodologies, and applications, this second volume combines fundamental information with an overview of the role of ceramic membranes, electrodes and interfaces in this important, interdisciplinary and rapidly developing field. Written primarily for specialists working in solid state electrochemistry, this first comprehensive handbook on the topic focuses on the most important developments over the last decade, as well as the methodological and theoretical aspects and practical applications. This makes the contents equally of interest to material, physical and industrial scientists, and to physicists. Also available as a two-volume set.


Chemical Complexity

Chemical Complexity

Author: Alexander S. Mikhailov

Publisher: Springer

Published: 2017-08-10

Total Pages: 209

ISBN-13: 3319573772

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This book provides an outline of theoretical concepts and their experimental verification in studies of self-organization phenomena in chemical systems, as they emerged in the mid-20th century and have evolved since. Presenting essays on selected topics, it was prepared by authors who have made profound contributions to the field. Traditionally, physical chemistry has been concerned with interactions between atoms and molecules that produce a variety of equilibrium structures - or the 'dead' order - in a stationary state. But biological cells exhibit a different 'living' kind of order, prompting E. Schrödinger to pose his famous question “What is life?” in 1943. Through an unprecedented theoretical and experimental development, it was later revealed that biological self-organization phenomena are in complete agreement with the laws of physics, once they are applied to a special class of thermodynamically open systems and non-equilibrium states. This knowledge has in turn led to the design and synthesis of simple inorganic systems capable of self-organization effects. These artificial 'living organisms' are able to operate on macroscopic to microscopic scales, even down to single-molecule machines. In the future, such research could provide a basis for a technological breakthrough, comparable in its impact with the invention of lasers and semiconductors. Its results can be used to control natural chemical processes, and to design artificial complex chemical processes with various functionalities. The book offers an extensive discussion of the history of research on complex chemical systems and its future prospects.