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Oxygen Ion and Mixed Conductors and Their Technological Applications
  • Language: en
  • Pages: 492

Oxygen Ion and Mixed Conductors and Their Technological Applications

Progress in the development of oxygen ion and mixed conductors is responsible for innovations in gas sensors, fuel cells, oxygen permeation membranes, oxygen pumps and electrolyzers. Commercialization has been impeded by material stability and compatibility issues, high fabrication costs and an inadequate understanding of the interfacial phenomena controlling the operation of the devices. Here, a group of experts cover all the key topical areas, ranging from fundamentals relating to (a) defects, electrochemical and interfacial processes, (b) catalysis, electrocatalysis and gas reforming, to design and fabrication, including (c) advanced electroceramic processing methods, (d) materials selection and optimization, (e) and applications including scale-up, commercialization and competitive technologies. Readership: Materials scientists, chemists, physicists and chemical and electrical engineers, either first entering the field or active within it.

Handbook of Solid State Electrochemistry
  • Language: en
  • Pages: 644

Handbook of Solid State Electrochemistry

  • Type: Book
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  • Published: 2019-04-24
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  • Publisher: CRC Press

The Handbook of Solid State Electrochemistry is a one-stop resource treating the two main areas of solid state electrochemistry: electrochemical properties of solids such as oxides, halides, and cation conductors; and electrochemical kinetics and mechanisms of reactions occurring on solid electrolytes, including gas-phase electrocatalysis. The fund

Resistive Switching: Oxide Materials, Mechanisms, Devices and Operations
  • Language: en
  • Pages: 386

Resistive Switching: Oxide Materials, Mechanisms, Devices and Operations

This book provides a broad examination of redox-based resistive switching memories (ReRAM), a promising technology for novel types of nanoelectronic devices, according to the International Technology Roadmap for Semiconductors, and the materials and physical processes used in these ionic transport-based switching devices. It covers defect kinetic models for switching, ReRAM deposition/fabrication methods, tuning thin film microstructures, and material/device characterization and modeling. A slate of world-renowned authors address the influence of type of ionic carriers, their mobility, the role of the local and chemical composition and environment, and facilitate readers’ understanding of ...

Solid-Gas Electrochemical Interfaces 2 – SGEI 2
  • Language: en
  • Pages: 168
Index of Patents Issued from the United States Patent and Trademark Office
  • Language: en
  • Pages: 2144

Index of Patents Issued from the United States Patent and Trademark Office

  • Type: Book
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  • Published: 1992
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  • Publisher: Unknown

None

Science and Technology of Fast Ion Conductors
  • Language: en
  • Pages: 365

Science and Technology of Fast Ion Conductors

The rediscovery of fast ion conduction in solids in the 1960's stimulated interest both in the scientific community in which the fundamentals of diffusion, order-disorder phenomena and crystal structure evaluation required re-examination, and in the technical community in which novel approaches to energy conversion and chemical sensing became possible with the introduction of the new field of "Solid State Ionics. " Because of both the novelty and the vitality of this field, it has grown rapidly in many directions. This growth has included the discovery of many new crystalline fast ion conductors, and the extension to the fields of organic and amorphous compounds. The growth has involved the ...

Gravity, Special Relativity, and the Strong Force
  • Language: en
  • Pages: 155

Gravity, Special Relativity, and the Strong Force

This book shows that the strong interaction forces, which keep hadrons and nuclei together, are relativistic gravitational forces exerted between very small particles in the mass range of neutrinos. First, this book considers the motion of two or three charged particles under the influence of electrostatic and gravitational forces only, which shows that bound states are formed by following the same semi-classical methodology used by Bohr to describe the H atom. This approach is also coupled with Newton’s gravitational law and with Einstein’s special relativity. The results agree with experiments on the masses, binding energies, radii, angular moments and magnetic moments of hadrons. The model provides the means to rationalize all the main experimental features of the strong force. Some of the implications for the unification of forces and the nature of our micro-cosmos and macro-cosmos are also discussed. The creation of mass itself, in other words, of hadrons from particles as light as neutrinos, can now be modeled in a straightforward manner.

Mama Rose's Turn
  • Language: en
  • Pages: 351

Mama Rose's Turn

Hers is the show business saga you think you already know--but you ain't seen nothin' yet. Rose Thompson Hovick, mother of June Havoc and Gypsy Rose Lee, went down in theatrical history as "The Stage Mother from Hell" after her immortalization on Broadway in Gypsy: A Musical Fable. Yet the musical was 75 percent fictionalized by playwright Arthur Laurents and condensed for the stage. Rose's full story is even more striking. Born fearless on the North Dakota prairie in 1891, Rose Thompson had a kind father and a gallivanting mother who sold lacy finery to prostitutes. She became an unhappy teenage bride whose marriage yielded two entrancing daughters, Louise and June. When June was discovered...

Statistical Physics,
  • Language: en
  • Pages: 712
Electrochemistry of Nanomaterials
  • Language: en
  • Pages: 336

Electrochemistry of Nanomaterials

Engineering of nanophase materials and devices is of vital interest in electronics, semiconductors and optics, catalysis, ceramics and magnetism. Research associated with nanoparticles has widely spread and diffused into every field of scientific research, forming a trend of nanocrystal engineered materials. Electrochemical methods are widely used for the preparation of nanoparticles and the electrochemical properties of such nanomaterials are most relevant for their applications. This comprehensive reference work will appeal to advanced graduate students and researchers in the field specialized in electrochemistry, materials physics and materials science.