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In-situ studies of the reactions of bifunctional and heterocyclic molecules over noble metal single crystal and nanoparticle catalysts studied with kinetics and sum-frequency generation vibrational spectroscopy.

机译:用动力学和和频产生振动光谱学研究了双官能团和杂环分子在贵金属单晶和纳米颗粒催化剂上的反应的原位研究。

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摘要

Sum frequency generation surface vibrational spectroscopy (SFG-VS) in combination with gas chromatography (GC) was used in-situ to monitor surface bound reaction intermediates and reaction selectivities for the hydrogenation reactions of pyrrole, furan, pyridine, acrolein, crotonaldehyde, and prenal over Pt(111), Pt(100), Rh(111), and platinum nanoparticles under Torr reactant pressures and temperatures of 300K to 450K. The focus of this work is the correlation between the SFG-VS observed surface bound reaction intermediates and adsorption modes with the reaction selectivity, and how this is affected by catalyst structure and temperature.;Pyrrole hydrogenation was investigated over Pt(111) and Rh(111) single crystals at Torr pressures. It was found that pyrrole adsorbs to Pt(111) perpendicularly by cleaving the N-H bond and binding through the nitrogen. However, over Rh(111) pyrrole adsorbs in a tilted geometry binding through the pi-aromatic orbitals. A surface-bound pyrroline reaction intermediate was detected over both surfaces with SFG-VS. It was found that the ring-cracking product butylamine is a reaction poison over both surfaces studied.;Furan hydrogenation was studied over Pt(111), Pt(100), 10 nm cubic platinum nanoparticles and 1 nm platinum nanoparticles. The product distribution was observed to be highly structure sensitive and the acquired SFG-VS spectra reflected this sensitivity. Pt(100) exhibited more ring-cracking to form butanol than Pt(111), while the nanoparticles yielded higher selectivities for the partially saturated ring dihydrofuran.;Pyridine hydrogenation was investigated over Pt(111) and Pt(100). The alpha-pyridyl surface adsorption mode was observed with SFG-VS over both surfaces. 1,4-dihydropyridine was seen as a surface intermediate over Pt(100) but not Pt(111). Upon heating the surfaces to 350K, the adsorbed pyridine changes to a flat-lying adsorption mode. No evidence was found for the pyridinium cation.;The hydrogenation of the alpha,beta-unsaturated aldehydes acrolein, crotonaldehyde, and prenal were investigated over Pt(111) and Pt(100). The selectivity for the hydrogenation of the C=C bond was found to depend on the number of methyl groups added to the bond. The adsorption modes of the three aldehydes were determined. The hydrogenation of crotonaldehyde was found to be nearly structure insensitive as the TOF and selectivity were very close to the same over Pt(111) and Pt(100). SFG-VS indicated identical surface intermediates over the two crystal faces during crotonaldehyde hydrogenation.
机译:总和频率产生表面振动光谱(SFG-VS)与气相色谱(GC)结合使用,以监测表面结合的反应中间体和吡咯,呋喃,吡啶,丙烯醛,巴豆醛和醛的加氢反应的反应选择性在Torr反应物压力和300K至450K的温度下在Pt(111),Pt(100),Rh(111)和铂纳米颗粒上沉积。这项工作的重点是SFG-VS观察到的表面键合反应中间体和吸附模式与反应选择性之间的相关性,以及这如何受催化剂结构和温度的影响。;在Pt(111)和Rh( 111)在托尔压力下的单晶。发现吡咯通过裂解N-H键并通过氮结合而垂直吸附到Pt(111)上。但是,Rh(111)上的吡咯以倾斜的几何形状吸附,通过pi-芳香族轨道结合。用SFG-VS在两个表面上检测到表面结合的吡咯啉反应中间体。研究发现,开环产物丁胺在所研究的两个表面上都是反应毒物。研究了在Pt(111),Pt(100),10 nm立方铂纳米颗粒和1 nm铂纳米颗粒上的呋喃氢化反应。观察到产物分布对结构高度敏感,并且所获得的SFG-VS光谱反映了这种敏感性。 Pt(100)比Pt(111)表现出更多的开环形成丁醇,而纳米颗粒对部分饱和的环二氢呋喃具有更高的选择性。用SFG-VS在两个表面上观察到α-吡啶基表面吸附模式。 1,4-二氢吡啶被认为是Pt(100)之上的表面中间体,而不是Pt(111)之上的表面中间体。将表面加热到350K后,吸附的吡啶变为平直的吸附模式。没有发现吡啶鎓阳离子的证据。在Pt(111)和Pt(100)上研究了α,β-不饱和醛丙烯醛,巴豆醛和醛的氢化。发现C = C键氢化的选择性取决于加到该键上的甲基的数目。确定了三种醛的吸附模式。发现巴豆醛的氢化几乎对结构不敏感,因为TOF和选择性在Pt(111)和Pt(100)上非常接近。 SFG-VS表明在巴豆醛加氢过程中,两个晶体表面上的表面中间体相同。

著录项

  • 作者

    Kliewer, Christopher Jesse.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Chemistry Physical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:10

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