Structure intergrowth in ceramic SrNbO3.5−x
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference6 articles.
1. Defects and Order in Perovskite-Related Oxides
2. Etude cristallographique des termes n = 4,5, 5 et 6 des séries (La, Ca)nTinO3n+2, (Nd, Ca)nTinO3n+2 et Can(Ti, Nb)nO3n+2
3. Etude par microscopie electronique de quelques termes de la serie (Na, Ca)n Nbn O3n+2
4. Phases AnBnO3n+2 des syste`mes La2Ti2O7-CaTiO3, Nd2Ti2O7-CaTiO3 et Ca2Nb2O7-CaTiO3. II. Nouvelles caracte´ristiques cristallographiques et interpre´tation du maclage re´ve´le´par microscopiee´lectronique
5. Perovskite-like compounds ABO3+x (0.44 ≤x < 0.5). Electron microscopy survey on the (NaCa)nNbno3n+2 (4
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1. Influence of pressure on electro-mechanical properties of SrNbO3: A DFT study;High Temperatures-High Pressures;2020
2. Patterning Oxide Nanopillars at the Atomic Scale by Phase Transformation;Nano Letters;2015-09-01
3. Atomic and electronic structure of the SrNbO3/SrNbO3.4 interface;Applied Physics Letters;2014-12
4. Crystallization Atmosphere and Substrate Effects on the Phase and Texture of Chemical Solution Deposited Strontium Niobate Thin Films;Journal of the American Ceramic Society;2013-02-12
5. Synthesis, structural, magnetic and transport properties of layered perovskite-related titanates, niobates and tantalates of the type AnBnO3n+2, A′Ak−1BkO3k+1 and AmBm−1O3m;Progress in Solid State Chemistry;2008-11
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