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Effect of dipolar fields, surface termination, and surface orientation on photochemical reactions on transition metal oxides.

机译:偶极场,表面终止和表面取向对过渡金属氧化物的光化学反应的影响。

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摘要

Experiments have been conducted to determine the effects of dipolar fields, surface termination, and surface orientation on the photochemical reactivity of several transition metal oxides. These compounds include BaTiO3, SrTiO3, BaTi4O9, Sr2Nb2O 7, and Sr2Ta2O7 which were studied as polycrystalline ceramics, single crystals, micron-sized faceted particles, or some combination of these forms. The reduction of Ag+ from an aqueous AgNO3 solution (Ag0 product) and the oxidation of Pb2+ from an aqueous lead acetate solution (PbO 2 product) were selected as probe reactions because they leave insoluble products on the oxide surfaces.; The reactivity of ferroelectric BaTiO3 was dominated by the effect of dipolar fields on the transport of photogenerated charge carriers. Silver was reduced on domains with a positive surface charge while lead was oxidized on domains with a negative surface charge. This reactivity implies that the dipolar field in individual domains drives photogenerated charge carriers to oppositely charged surfaces. This reaction mechanism results in a physical separation of the photogenerated charge carriers and the locations of the oxidation and reduction half reactions on the catalyst surface. Experiments performed on polycrystalline ceramics, single crystals, and micron-sized particles all showed this domain specific reactivity.; SrTiO3 has the ideal cubic perovskite structure from which the tetragonally distorted ferroelectric BaTiO3 phase is derived. Polished and annealed surfaces of randomly oriented grain surfaces were bound by some combination of the following three planes: {lcub}110{rcub}, {lcub}111{rcub}, and a complex facet inclined approximately 24° from {lcub}100{rcub}. Surfaces with the complex {lcub}100{rcub} facet were found to be the most active for Ag reduction. Single crystal studies also showed that the nonpolar (100) surface is the most reactive and that the composition of the termination layer does not influence this reaction. However, the polar (111) and (110) surfaces had a non-uniform distribution of reaction products. For these orientations, the location of the reduction and oxidation reactions is determined by the chemical and charge terminations of the different terraces or facets. The reactivity for silver reduction on the faceted particles is ranked as (100) > (111) > (110) while the (100) surface was least reactive for lead oxidation. Overall, these results show that the photochemical reactivity of SrTiO3 is anisotropic and that on polar surfaces, dipolar fields arising from charged surface domains influence the transport of photogenerated charge carriers and promote spatially selective oxidation and reduction reactions. (Abstract shortened by UMI.)
机译:已经进行实验以确定偶极场,表面终止和表面取向对几种过渡金属氧化物的光化学反应性的影响。这些化合物包括BaTiO3,SrTiO3,BaTi4O9,Sr2Nb2O 7和Sr2Ta2O7,它们已作为多晶陶瓷,单晶,微米级多面颗粒或这些形式的某种组合进行了研究。选择从AgNO3水溶液(Ag0产物)中还原Ag +和从乙酸铅水溶液(PbO 2产物)中Pb2 +氧化作为探针反应,因为它们在氧化物表面上留下不溶的产物。铁电BaTiO3的反应性受偶极场对光生电荷载流子传输的影响。银在带正表面电荷的区域上被还原,而铅在带负表面电荷的区域上被氧化。这种反应性意味着单个域中的偶极场将光生电荷载流子驱动到带相反电荷的表面。该反应机理导致光生载流子的物理分离以及催化剂表面上的氧化和还原半反应的位置。在多晶陶瓷,单晶和微米级颗粒上进行的实验均显示了该域特异性反应性。 SrTiO3具有理想的立方钙钛矿结构,由此可以得出四方畸变的铁电BaTiO3相。随机取向的晶粒表面的抛光和退火表面由以下三个平面的某种组合约束:{lcub} 110 {rcub},{lcub} 111 {rcub}和一个与{lcub} 100 {倾斜约24°的复杂面rcub}。发现具有复杂的{lcub} 100 {rcub}刻面的表面对于减少Ag最为活跃。单晶研究还表明,非极性(100)表面的反应性最高,并且终止层的组成不会影响该反应。但是,极性(111)和(110)表面的反应产物分布不均匀。对于这些取向,还原和氧化反应的位置由不同平台或小平面的化学和电荷末端决定。将多面颗粒上的银还原反应性评级为(100)>(111)>(110),而(100)表面对铅氧化的反应性最低。总体而言,这些结果表明,SrTiO3的光化学反应性是各向异性的,并且在极性表面上,由带电表面域产生的偶极场会影响光生电荷载流子的传输并促进空间选择性氧化和还原反应。 (摘要由UMI缩短。)

著录项

  • 作者

    Giocondi, Jennifer Lynn.;

  • 作者单位

    Carnegie Mellon University.;

  • 授予单位 Carnegie Mellon University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 104 p.
  • 总页数 104
  • 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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