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X-ray photoelectron spectroscopy and kinetic study: Platinum-group metals and bimetallic surfaces.

机译:X射线光电子能谱和动力学研究:铂族金属和双金属表面。

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摘要

Pt-group metals were some of the first metals to be studied as catalysts for industrial use. The goal of these studies was to ascertain a fundamental understanding of CO oxidation and acetylene cyclotrimerization reactions on Pt-group metals. A further goal was to determine the optimal conditions for each reaction.;CO oxidation on Rh(111), Pt(100), and Pd(100) was scrutinized on various oxide surfaces from chemisorbed to bulk metal oxides. Low pressure reactions on Rh(111) reveal the highest activity was a CO uninhibited surface with 1ML of chemisorbed oxygen. Pt(100) high pressure oxidation revealed that only 1ML oxygen is formed during high pressures reactions. High pressure CO oxidation reactions on Pd(100) show oxygen penetration after CO has been consumed; however, during the highest activity XPS found only chemisorbed species.;The cyclotrimerization of acetylene to benzene is another reaction found in industry typically carried out on Pd. The active site is considered to be a 7 atom configuration with 6 atoms surrounding a central atom. By adding relatively catalytically inert Au atoms to the active Pd(111) surface the acetylene coupling activity is enhanced. Cyclization activity is a function of the surface composition and the surface structure. A single Pd atom surrounded by six Au atoms is found to have the highest activity at 300K for acetylene cyclotrimerization.
机译:铂族金属是最早被研究用作工业催化剂的金属。这些研究的目的是确定对Pt类金属上的CO氧化和乙炔环三聚反应的基本了解。另一个目标是确定每个反应的最佳条件。在从化学吸附到本体金属氧化物的各种氧化物表面上仔细检查Rh(111),Pt(100)和Pd(100)上的CO氧化。 Rh(111)上的低压反应表明,活性最高的是不受化学吸附的氧气<1ML的CO未抑制表面。 Pt(100)高压氧化显示在高压反应过程中仅形成<1ML的氧气。 Pd(100)上的高压CO氧化反应表明,CO被消耗后,氧气会渗透;然而,在最高活性的XPS中,XPS仅发现化学吸附的物质。乙炔向苯的环三聚是工业上通常在Pd上进行的另一种反应。活性位点被认为是7个原子的构型,其中6个原子围绕一个中心原子。通过将相对催化惰性的Au原子添加到活性Pd(111)表面,可提高乙炔偶联活性。环化活性是表面组成和表面结构的函数。发现被六个Au原子包围的单个Pd原子在300K时具有最高的乙炔环三聚活性。

著录项

  • 作者

    Gath, Kerrie K.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Chemistry Physical.;Engineering Materials Science.;Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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