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(S)TEM analysis of functional transition metal oxides.

机译:(S)TEM分析功能过渡金属氧化物。

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摘要

Perovskite vanadates (AVO3) form an ideal family to study the structure-property relationships in transition metal oxides because their physical properties can easily be tailored by varying the A-site cations. (S)TEM is an ideal tool for this type of study due to its capacity for simultaneous imaging and chemical analysis. Determination of the oxidation state of vanadium in complex oxides have been carried out by electron energy loss spectroscopy. SrVO3/LaAlO3 is then studied both experimentally and theoretically as a prototype system. Extra electrons have been detected on the interface layer, and further proven to originate mainly from a change in the local bonding configuration of V at the La-O terminated substrate surface.;Cr-containing stainless steel deposited with a LaCrO3 thin-film layer is a promising interconnect material of Solid Oxide Fuel Cells (SOFC). Our investigation on its microstructural evolution reveals that the LaCrO 3 thin film plays a role in inhibiting the growth of an oxide layer on the metal surface and thus protects the surface of the stainless steel. Ca-doped LaCoO3 is a promising SOFC cathode material. The domain structures and the oxidation state of Co in Ca-doped LaCoO3, which are directly related to its mechanical properties and electronic conductivity, are investigated by in-situ TEM and EELS. The formation of microcracks is observed during thermal cycles. Ca-doping in LaCoO3 is shown to not only improve the electronic conductivity of the material, but is also likely to strengthen the grain boundaries. The realization of its application in SOFCs depends on depressing the ferroelastisity to reduce strain formation during thermal cycles.;The application of the (S)TEM techniques used for studying the perovskite systems are further extended to other compounds containing transition metal elements. The refractory minerals from Comet 81 P/Wild-2 are studied to investigate the formation of the early solar system. A relatively high Ti3+/Ti 4+ ratio in fassaite and the presence of osbornite indicate that the Comet refractory minerals formed in the inner solar nebula and were later transported to the outer solar system where the comet formed. This implies a much more dynamic and perhaps more violent solar nebula than was previously suspected.
机译:钙钛矿钒酸盐(AVO3)是研究过渡金属氧化物中结构与性质之间关系的理想家族,因为它们的物理性质可以通过改变A位阳离子而轻松地进行定制。 (S)TEM由于具有同时成像和化学分析的能力,因此是此类研究的理想工具。钒在复合氧化物中的氧化态的测定已通过电子能量损失光谱法进行。然后将SrVO3 / LaAlO3作为原型系统进行实验和理论研究。在界面层上已检测到多余的电子,并进一步证明其主要来自于La-O封端的基底表面上V的局部键合构型的变化。沉积有LaCrO3薄膜层的含Cr不锈钢是固体氧化物燃料电池(SOFC)的一种有前途的互连材料。我们对其微观结构演变的研究表明,LaCrO 3薄膜在抑制金属表面氧化物层的生长方面发挥了作用,从而保护了不锈钢的表面。掺Ca的LaCoO3是有前途的SOFC阴极材料。通过原位TEM和EELS研究了Ca掺杂LaCoO3中Co的畴结构和Co的氧化态,直接关系到其力学性能和电导率。在热循环中观察到微裂纹的形成。 LaCoO3中的Ca掺杂不仅可以提高材料的电子导电性,而且还可以增强晶界。其在SOFC中的应用的实现取决于降低铁弹性以减少热循环过程中的应变形成。用于研究钙钛矿体系的(S)TEM技术的应用进一步扩展到其他含有过渡金属元素的化合物。研究了来自彗星81 P / Wild-2的难熔矿物,以研究早期太阳系的形成。钙长石中较高的Ti3 + / Ti 4+比和存在方钠石表明,彗星的耐火矿物在太阳内部星云中形成,随后被运至形成太阳的外部太阳系。这意味着太阳星云比以前所怀疑的要活跃得多,甚至可能更猛烈。

著录项

  • 作者

    Chi, Miaofang.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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