3 edition of Superionic conductors found in the catalog.
|Statement||edited by Gerald D. Mahan and Walter L. Roth.|
|Series||Physics of solids and liquids|
|Contributions||Mahan, Gerald D., Roth, Walter L.|
|The Physical Object|
|Number of Pages||438|
The so-called superionic conductors represent a class of solid materials showing an unusually high ionic conductivity. Their structure is characterized by strong disorder in the sublattice of conducting ions. We shall describe the dynamic properties of the partially disordered state on the basis of two classes of theoretical models. For stochastic lattice gases we discuss the behavior of. COVID Resources. Reliable information about the coronavirus (COVID) is available from the World Health Organization (current situation, international travel).Numerous and frequently-updated resource results are available from this ’s WebJunction has pulled together information and resources to assist library staff as they consider how to handle coronavirus.
We present a detailed exposition of how first-principles methods can be used to guide alkali superionic conductor (ASIC) study and design. Using the argyrodite Li6PS5Cl as a case study, we demonstrate how modern information technology (IT) infrastructure and software tools can facilitate the assessment of alkali superionic conductors in terms of various critical properties of interest such Cited by: Design and synthesis of room temperature stable Li-argyrodite superionic conductors via cation doping Design and synthesis of room temperature stable Li-argyrodite superionic conductors via cation doping Z. Zhang, Y. Sun, X. Duan, L. Peng, books or book chapters) do not need to formally request permission to reproduce material contained Cited by: 4.
Structure and Its Influence on Superionic Conduction: EXAFS Studies -- Technique of EXAFS -- Structural Considerations for Superionic Conduction -- EXAFS Investigations of bcc Superionic Conductors: AgI -- EXAFS Investigations of fcc Superionic Conductors: Cuprous Halides -- Summary -- References -- 3. An advanced superionic conductor (AdSIC) is fast ion conductor that has a crystal structure close to optimal for fast ion transport (FIT). History. The term was introduced in a paper by A.L. Despotuli, A.V. Andreeva and B. Rambaby. Characteristics. The rigid ion sublattice of AdSICs have structure channels where mobile ions of opposite sign.
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Superionic Conductors: Heterostructures and Elements of Functional Electronics Based on Them by F A Karamov (Author)Cited by: 6. Superionic Conductors Paperback – J by G. Mahan (Editor) See all 5 formats and editions Hide other formats and editionsFormat: Paperback.
A hundred and eighty five chemists, physicists, and engineers met in Schenectady, New York, for the three days May, to discuss the subject of Superionic Conductors.
This International Conference was held at the Research and Development Center of the General Electric Company. In promoting such Superionic conductors book application, the importance of basic research based on, for example, physics and chemistry, has been recognized, and has led to the establishment of an academic field called solid- state ionics in which science and engineering have been integrated.
Superionic conductors are highly promising functional materials. About this book A hundred and eighty five chemists, physicists, and engineers met in Schenectady, New York, for the three days May, to discuss the subject of Superionic Conductors. This International Conference was held at the Research and Development Center.
Physics of Superionic Conductors Superionic conductors book in Current Physics) [Salamon, M. B.] on *FREE* shipping on qualifying offers. Physics of Superionic Conductors (Topics in Current Physics). About this book Superionic conductors are solids whose ionic conductivities approach, and in some cases exceed, those of molten salts and electrolyte solutions.
This implies an un usual state of matter in which some atoms have nearly liquidlike mobility while others retain their regular crystalline arrangement. Superionic conductors are solids whose ionic conductivities approach, and in some cases exceed, those of molten salts and electrolyte solutions.
This implies an un usual state of matter in which some atoms have nearly liquidlike mobility while others retain their regular crystalline arrangement. The following chapters present most of the lectures delivered at the NATO Advanced Studies Institute on "The Physics of Super ionic Conductors and Electrode Materials", held at Odense Univer sity's Mathematics Department between the 4th and 22nd of August, The aim of the organizing.
This book reports the work done in preparation of some silver iodide based superionic conductors. It has been divided into five chapters, the first chapter contains general introduction to the work. The second, third, forth and fifth chapters report preparation and ionic conductivity measurements of these materials studied were prepared by solid state reaction method.
System Upgrade on Tue, May 19th, at 2am (ET) During this period, E-commerce and registration of new users may not be available for up to 12 hours. The catalytic mechanism offers an efficient tool to produce crystalline semiconductor nanowires, in which the choice, state, and structure of catalysts are active research issues of much interest.
Here we report a novel solution–solid–solid (SSS) mechanism for nanowire growth catalyzed by solid-phase superionic conductor nanocrystals in low-temperature by: This book is divided into 17 chapters, and begins with an overview of various materials, such as glasses, heterogeneous or dispersed phase conductors, proton conductors, Nasicon, and fluorites.
These topics are followed by a discussion on the problems related with entropy effects, subsurface space charge, and defect formation parameters. The development of cheap, durable, and safe inorganic solid electrolytes with superionic conductivity is the key for the next generation of all-solid metal-ion batteries.
The recent discovery of antiperovskites with composition Li3OA (A = halogen) shows promise in this regard. Here, we demonstrate the potent Journal of Materials Chemistry A HOT PapersCited by: Solid Electrolytes: General Principles, Characterization, Materials, Applications presents specific theories and experimental methods in the field of superionic conductors.
It discusses that high ionic conductivity in solids requires specific structural and energetic conditions. About this book Introduction The following chapters present most of the lectures delivered at the NATO Advanced Studies Institute on "The Physics of Super ionic Conductors and Electrode Materials", held at Odense Univer sity's Mathematics Department between the 4th and 22nd of August, A new 3D open-framework potassium ferrite, K2Fe4O7 (1), has been successfully synthesized under hydrothermal conditions.
The framework of 1 consists of both FeO6 octahedral and FeO4 tetrahedral units with shared vertices and edges where there are 6- and 3-ring channels parallel to the trigonal a- and c-axes, Journal of Materials Chemistry A HOT Papers.
Examples beta-Alumina. Another example of a popular fast ion conductor is beta-alumina solid electrolyte. Unlike the usual forms Fluoride ion conductors. Lanthanum trifluoride (LaF 3) is conductive for F − ions, used in some ion selective electrodes.
Iodides. A textbook example of a fast ion. Identifying superionic conductors by materials informatics and high-throughput synthesis Masato Matsubara 1 *, Akitoshi Suzumura 1, Nobuko Ohba 1 & Ryoji Asahi 1 *.
An argyrodite sulfide-based superionic conductor synthesized by a liquid-phase technique with tetrahydrofuran and ethanol† So Yubuchi, a Miwa Uematsu, a Chie Hotehama, a Atsushi Sakuda, a Akitoshi Hayashi * a and Masahiro Tatsumisago * aCited by:.
The bias-free prediction by the network helped us to find superionic conductors composed of charge-transfer complexes of aromatic polymers (ionic conductivity of around 10 –3 S/cm at room temperature).
The glassy design was contrary to the traditional concept of rubbery polymer electrolytes, but it was found to be appropriate to achieve fast Author: Kan Hatakeyama-Sato, Toshiki Tezuka, Momoka Umeki, Kenichi Oyaizu.Comparing the Descriptors for Investigating the Influence of Lattice Dynamics on Ionic Transport Using the Superionic Conductor Na3PS4–xSex.
Journal of the American Chemical Society(43), DOI: /jacs.8bCited by: Superionic Conductor Physics Proceedings of the 1st International Discussion Meeting on Superionic Conductor Physics Kyoto, Japan, September | Junichi Kawamura, Shinzo Yoshikado, takashi Sakuma, Yoshitaka Michihiro, Masaru Aniya, Yoshiaki Ito | download | B–OK.
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