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There are 16529 results for: content related to: Oxygen Defects and Novel Transport Mechanisms in Apatite Ionic Conductors: Combined 17 O NMR and Modeling Studies

  1. Oxygen Defects and Novel Transport Mechanisms in Apatite Ionic Conductors: Combined 17O NMR and Modeling Studies

    Angewandte Chemie

    Volume 123, Issue 40, September 26, 2011, Pages: 9500–9505, Dr. Pooja M. Panchmatia, Dr. Alodia Orera, Gregory J. Rees, Prof. Mark E. Smith, Dr. John V. Hanna, Dr. Peter R. Slater and Prof. M. Saiful Islam

    Article first published online : 24 AUG 2011, DOI: 10.1002/ange.201102064

  2. Oxide Ion-Conducting Materials for Electrolytes

    Materials for High-Temperature Fuel Cells

    San Ping Jiang, Yushan Yan, Pages: 97–132, 2013

    Published Online : 26 JUN 2013, DOI: 10.1002/9783527644261.ch3

  3. Development of apatite-type oxide ion conductors

    The Chemical Record

    Volume 4, Issue 6, 2004, Pages: 373–384, P.R. Slater, J.E.H. Sansom and J.R. Tolchard

    Article first published online : 28 FEB 2005, DOI: 10.1002/tcr.20028

  4. Remarkably High Oxide Ion Conductivity at Low Temperature in an Ordered Fluorite-Type Superstructure

    Angewandte Chemie International Edition

    Volume 51, Issue 3, January 16, 2012, Pages: 690–694, Xiaojun Kuang, Julia L. Payne, Mark R. Johnson and Ivana Radosavljevic Evans

    Article first published online : 1 DEC 2011, DOI: 10.1002/anie.201106111

  5. Enhancement of Ionic Conductivity of Apatite-Type Lanthanum Silicates Doped With Cations

    Journal of the American Ceramic Society

    Volume 90, Issue 10, October 2007, Pages: 3099–3105, Hideki Yoshioka

    Article first published online : 7 JUL 2007, DOI: 10.1111/j.1551-2916.2007.01862.x

  6. Layered LaSrGa3O7-Based Oxide-Ion Conductors: Cooperative Transport Mechanisms and Flexible Structures

    Advanced Functional Materials

    Volume 20, Issue 22, November 23, 2010, Pages: 3874–3880, Cristina Tealdi, Piercarlo Mustarelli and M. Saiful Islam

    Article first published online : 27 AUG 2010, DOI: 10.1002/adfm.201001137

    Corrected by:

    Correction: Correction: Layered LaSrGa3O7-Based Oxide-Ion Conductors: Cooperative Transport Mechanisms and Flexible Structures

    Vol. 21, Issue 2, 210, Article first published online: 28 DEC 2010

  7. Strategies for the Optimisation of the Oxide Ion Conductivities of Apatite-Type Germanates

    Fuel Cells

    Volume 11, Issue 1, February, 2011, Pages: 10–16, A. Orera, T. Baikie, P. Panchmatia, T. J. White, J. Hanna, M. E. Smith, M. S. Islam, E. Kendrick and P. R. Slater

    Article first published online : 14 JUL 2010, DOI: 10.1002/fuce.201000020

  8. Electrolytes for solid oxide fuel cells

    Wiley Interdisciplinary Reviews: Energy and Environment

    Volume 2, Issue 1, January/February 2013, Pages: 52–72, F. M. L. Figueiredo and F. M. B. Marques

    Article first published online : 19 JUL 2012, DOI: 10.1002/wene.23

  9. Novel electrolytes operating at 400-600 °C

    Standard Article

    Handbook of Fuel Cells

    T. Ishihara

    Published Online : 15 DEC 2010, DOI: 10.1002/9780470974001.f308090

  10. Analysis of the epoxy polymerization process with piperidine as the initiator

    Journal of Applied Polymer Science

    Volume 100, Issue 6, 15 June 2006, Pages: 5066–5086, Edward A. Aitken

    Article first published online : 29 MAR 2006, DOI: 10.1002/app.23647

  11. Oxygen Diffusion Mechanisms in Two Series of Oxide Ion Conductors: BIMEVOX and Brownmillerite Materials

    Advances in Solid Oxide Fuel Cells III: Ceramic and Engineering Science Proceeding, Volume 28, Issue 4

    Rolle, Aurelie, Roussel, Pascal, Kongmark, Chanapa, Pirovano, Caroline, Vannier, Rose-Noelle, Pages: 225–236, 2009

    Published Online : 14 DEC 2009, DOI: 10.1002/9780470339534.ch22

  12. A Metallic Room-Temperature Oxide Ion Conductor

    Angewandte Chemie International Edition

    Volume 53, Issue 28, July 7, 2014, Pages: 7344–7348, Martin Heise, Bertold Rasche, Dr. Anna Isaeva, Dr. Alexey I. Baranov, Prof. Dr. Michael Ruck, Konrad Schäfer, Prof. Dr. Rainer Pöttgen, Jens-Peter Eufinger and Prof. Dr. Jürgen Janek

    Article first published online : 27 MAY 2014, DOI: 10.1002/anie.201402244

  13. Oxide-based ORR catalysts

    Standard Article

    Handbook of Fuel Cells

    J. B. Goodenough and B. L. Cushing

    Published Online : 15 DEC 2010, DOI: 10.1002/9780470974001.f205040

  14. Directly Imaging Interstitial Oxygen in Silicate Apatite

    Advanced Energy Materials

    Volume 2, Issue 3, March, 2012, Pages: 316–321, Yaoqing Zhang, Zixue Su, Abul K. Azad, Wuzong Zhou and John T. S. Irvine

    Article first published online : 6 FEB 2012, DOI: 10.1002/aenm.201100607

  15. Remarkably High Oxide Ion Conductivity at Low Temperature in an Ordered Fluorite-Type Superstructure

    Angewandte Chemie

    Volume 124, Issue 3, January 16, 2012, Pages: 714–718, Xiaojun Kuang, Julia L. Payne, Mark R. Johnson and Ivana Radosavljevic Evans

    Article first published online : 1 DEC 2011, DOI: 10.1002/ange.201106111

  16. Oxygen Ion Diffusion and Surface Exchange Properties of the α- and δ-phases of Bi2O3

    Advanced Energy Materials

    Volume 4, Issue 10, July 15, 2014, Ryan D. Bayliss, Stuart N. Cook, Sakis Kotsantonis, Richard J. Chater and John A. Kilner

    Article first published online : 18 MAR 2014, DOI: 10.1002/aenm.201301575

  17. The effects of counter cation on oxide ion conductivity: In the case of Sr-doped LaAlO3 perovskite

    International Journal of Quantum Chemistry

    Volume 110, Issue 15, December 2010, Pages: 2912–2917, Taku Onishi

    Article first published online : 19 AUG 2010, DOI: 10.1002/qua.22837

  18. Microstructure and Oxide Ion Conductivity in a Dense La9.33(SiO4)6O2 Oxy-Apatite

    Journal of the American Ceramic Society

    Volume 92, Issue 5, May 2009, Pages: 1062–1068, José M. Porras-Vázquez, Enrique R. Losilla, Laura León-Reina, David Marrero-López and Miguel A.G. Aranda

    Article first published online : 1 MAY 2009, DOI: 10.1111/j.1551-2916.2009.03032.x

  19. Kinetic Model of Energy Transfer Processes Between Low-Coordinated Ions on MgO by Photoluminescence Decay Measurements

    ChemPhysChem

    Volume 7, Issue 4, April 10, 2006, Pages: 904–911, Céline Chizallet, Guylène Costentin, Jean-Marc Krafft, Hélène Lauron-Pernot and Michel Che

    Article first published online : 4 APR 2006, DOI: 10.1002/cphc.200500580

  20. Ca4(PO4)2O, tetracalcium diphosphate monoxide. Crystal structure and relationships to Ca5(PO4)3OH and K3Na(SO4)2

    Acta Crystallographica Section B

    Volume 29, Issue 10, October 1973, Pages: 2046–2056, B. Dickens, W. E. Brown, G. J. Kruger and J. M. Stewart

    DOI: 10.1107/S0567740873006102