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首页> 外文期刊>Journal of the European Ceramic Society >Phase homogeneity analysis of La0.99Sr0.01Nb0.99Al0.01O4-delta and La0.99Ca0.01Nb0.99Ti0.01O4-delta proton conductors by high-resolution STEM and EELS
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Phase homogeneity analysis of La0.99Sr0.01Nb0.99Al0.01O4-delta and La0.99Ca0.01Nb0.99Ti0.01O4-delta proton conductors by high-resolution STEM and EELS

机译:高分辨率STEM和EELS分析La0.99Sr0.01Nb0.99Al0.01O4-δ和La0.99Ca0.01Nb0.99Ti0.01O4-δ质子导体的相均质性

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摘要

The microstructural and compositional homogeneity of La0.99Ca0.01Nb0.99Ti0.01O4-delta and La(0.99)Sr(0.01)Nb(0.99)Al0(.01)O(4-delta) proton conductors was studied using the combination of atomic-resolution scanning transmission electron microscopy (STEM), electron energy loss spectroscopy (EELS) and STEM image simulations. The obtained results revealed that gently doped proton conductors were predominantly composed of grains with a monoclinic lanthanum niobate crystal structure. In addition to the host phase, dopant-rich phases were also observed and identified. The La(0.99)Sr(0.01)Nb(0.99)Al0(.01)O(4-delta) matrix accommodated dopant-rich grains retaining an LaAlO3 cubic crystal structure with a significant fraction of Sr incorporated into them. The secondary phases embedded in the La0.99Ca0.01Nb0.99Ti0.01O4-delta matrix possessed the pyrochlore La2Ti2O7 crystal structure with Ca partially substituting La. High spatial resolution EELS revealed preferential Ca sites within the pyrochlore La2Ti2O7 crystal lattice. The origin of the secondary phase formation and the role of these phases for the transport properties of co-doped lanthanum niobates are discussed here. (C) 2014 Elsevier Ltd. All rights reserved.
机译:利用原子的结合研究了La0.99Ca0.01Nb0.99Ti0.01O4-del和La(0.99)Sr(0.01)Nb(0.99)Al0(.01)O(4-delta)质子导体的微观结构和组成均匀性分辨率扫描透射电子显微镜(STEM),电子能量损失谱(EELS)和STEM图像模拟。所得结果表明,轻掺杂的质子导体主要由具有单斜铌酸镧晶体结构的晶粒组成。除了宿主相,还观察和鉴定了富掺杂剂相。 La(0.99)Sr(0.01)Nb(0.99)Al0(.01)O(4-δ)基质容纳了富含LaAlO3立方晶体结构的掺杂物,其中掺入了大量的Sr。嵌入La0.99Ca0.01Nb0.99Ti0.01O4-delta基质中的次生相具有烧绿石La2Ti2O7晶体结构,其中Ca部分取代了La。高空间分辨率EELS揭示了烧绿石La2Ti2O7晶格中的优先Ca位点。本文讨论了次生相形成的起源以及这些相对于共掺杂铌酸镧的传输性质的作用。 (C)2014 Elsevier Ltd.保留所有权利。

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