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Materials for Electrochemical Energy Conversion and Storage


Materials for Electrochemical Energy Conversion and Storage


Ceramic Transactions Series, Band 127 1. Aufl.

von: Arumugam Manthiram, Prashant N. Kumta, S. K. Sundaram, Gerbrand Ceder

112,99 €

Verlag: Wiley
Format: PDF
Veröffentl.: 28.03.2012
ISBN/EAN: 9781118370834
Sprache: englisch
Anzahl Seiten: 272

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Beschreibungen

This new volume covers the latest developments in the field of electrochemistry. It addresses a variety of topics including new materials development, materials synthesis, processing, characterization, property measurements, structure-property relationships, and device performance. A broader view of various electrochemical energy conversion devices make this book a critical read for scientists and engineers working in related fields. <p>Papers from the symposium at the 102nd Annual Meeting of The American Ceramic Society, April 29-May 3, 2000, Missouri and the 103rd Annual Meeting, April 22-25, 2001, Indiana.</p>
<p><i>Preface ix</i></p> <p><b>Papers from 2000 Annual Meeting</b></p> <p>Oxygen Permeation Properties of the Intergrowth Oxide Sr3-x, La x Fe2-y, Co y O7-ä  3<br /> <i>F. Prado,T. Armstrong, A, Manthiram, and A. Caneiro</i></p> <p>Structural Stability of Lithium-Extracted Li l-x, Ni l-y, Co y O2 II<br /> <i>R.V. Chebiam, F. Prado, and A. Manthiram</i></p> <p>Reaction Kinetics and Mechanism of Formation of LiNi02 from Particulate Sol-Gel (PSG) Derived Precursors 19<br /> <i>C. C. Chang, J.Y Kim, Z. G.Yang, and R N. Kumta</i></p> <p>Phase Evolution as a Function of Synthesis Temperature in the Li Mn3 0 4 t 8 (0.7 $ y =£ 1.33) System 27<br /> <i>S. Choi and A. Manthiram</i></p> <p>Si/TiN Nanocomposite Anodes by High-Energy Mechanical Milling 35<br /> <i>l.-S. Kim, R N. Kumta, and G. E. Blomgren</i></p> <p><b>Papers from 2001 Annual Meeting Gas Separation Membranes</b></p> <p>Oxygen Permeation Through Mixed Conducting Perovskite Oxide Membranes 49<br /> <i>H. J. M. Bouwmeester and L M. van der Haar</i></p> <p>Oxygen Permeation Properties of Perovskite-Related Intergrowth Oxides in the Sr-Fe-Co-O System 59<br /> <i>F. Prado,T. Armstrong, and A. Manthiram</i></p> <p>Fe-Doped LaGa03-Based Perovskite Oxide as an Oxygen-Separating Membrane for CH4 Partial Oxidation 69<br /> <i>T. Ishihara.YTsuruta, H. Nishiguchi, and Y Takita</i></p> <p>Synthesis and Oxygen Permeation Properties of Sr2.7, Lan0.3 ,Fe2-y, My, 07-8 7 S (M = Mn, Co and Ni) 79<br /> <i>F. Prado and A. Manthiram</i></p> <p><b>Fuel Cells</b></p> <p>Low-Cost Manufacturing Processes for Solid Oxide Fuel Cells 91<br /> <i>M. M. Seabaugh, B. E, McCormick, K. Hasinska, C.T. Holt, S. L Swartz, and W. J. Dawson</i></p> <p>Manufacturing Routes and State of the A r t of the Planar Julich Anode-Supported Concept for Solid<br /> Oxide Fuel Cells 99<br /> <i>W. A. Muelenberg, N. H. Menzler, H. R Buchkremer, and D. Stover</i></p> <p>Materials and Microstructures for Improved Solid Oxide Fuel Cells 109<br /> <i>S. Huss, R. DoshiJ. Guan, G. Lear, K. Montgomery, N. Minh, and E. Ong</i></p> <p>Pulsed Laser Deposition and DC-Sputtering of Yttria- Stabilized Zirconia for Solid Oxide Fuel Cell Applications 117<br /> <i>B. Hobein.W. A. Muelenberg, F.Tietz, D. Stover, E. W. Kreutz, M. Cekada, and R Panjan</i></p> <p>Microstructure-Electrical Property Relationship in Nanocrystalline Ce02Thin Films 127<br /> <i>V. Petrovsky, B. R Gorman, H. U. Anderson, and T Petrovsky</i></p> <p>Electrical Measurements in Doped Zirconia- Ceria Ceramics 137<br /> <i>C. R. Foschini, L Perazolli. J. A. Várela, D. R F. Souza, and R I. R Filho</i></p> <p>Effects of Dissolution and Exsolution of Ni inYSZ 147<br /> <i>S. Linderoth and N. Bonanos</i></p> <p>Multilayered Ceramic Reactor for the Steam Reforming of Methanol into Hydrogen-Enriched Gas 157<br /> <i>D. Gervasio, S. Rogers, R. Koripella, S.Tasic, D. Zindel, R. Changrani, C. K. Dyer J. Hallmark, and D.Wilcox</i></p> <p>Si02-P205-Zr02 Sol-Gel/Nafion Composite Membranes for PEMFC 167<br /> <i>M. Aparicio, L C. Klein, K.I Adjemian, and A, B. Bocarsly</i></p> <p>Study of Glass/Metal Interfaces Under an Electric Field: Low Temperature/High Voltage 177<br /> <i>M.A.Alvarez and L C. Klein</i></p> <p><b>Lithium-Ion Batteries</b></p> <p>Olivine-Type Cathodes for Lithium Batteries 189<br /> <i>A.Yamada, M. Hosoya, S. C. Chung, and K. Hinokuma</i></p> <p>Amorphous Manganese Oxide Cathodes for Rechargeable Lithium Batteries 205<br /> <i>D. Im and A. Manthiram</i></p> <p>Synthesis and Electrochemical Properties of Spinel LiCo204 Cathodes 215<br /> <i>S. Choi and A. Manthiram</i></p> <p>Designing Structurally Stable Layered Oxide Cathodes for Lithium-Ion Batteries 225<br /> <i>S. Choi and A. Manthiram</i></p> <p>Modeling and Design of Intermetallic Electrodes for Lithium Batteries 235<br /> <i>R. Benedek, J.T.Vaughey, and M. M.Thackeray</i></p> <p>New Nanostructured Silicon and Titanium Nitride Composite Anodes for Li-Ion Batteries 249<br /> l<i>.-S. Kim, R N. Kumta, and G. E. Blomgren</i></p> <p>Index 259</p>
<strong>Arumugam Manthiram</strong> is the editor of Materials for Electrochemical Energy Conversion and Storage, published by Wiley. <p><strong>Prashant N. Kumta</strong> is the editor of Materials for Electrochemical Energy Conversion and Storage, published by Wiley.

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