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Oxygen Exchange in the Selective Oxidation of 2-Butanol on Oxygen Precovered Au(111)

机译:富氧的Au(111)上2-丁醇的选择性氧化过程中的氧交换

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摘要

Direct evidence for C-0 bond cleavage in the partial oxidation of 2-butanol on oxygen precovered Au(111) is provided using temperature programmed desorption (TPD) and molecular beam reactive scattering (MBRS) under ultrahigh vacuum (UHV) conditions. The oxygen precovered Au(111) surface can promote the partial oxidation of 2-butanol into 2-butanone with near 100% selectivity at low oxygen coverages, while 2-butanol adsorbs and desorbs molecularly on the clean Au(111) surface. Both C_2H_5C~(16)OCH_3 and C_2H_5C~(18)OCH_3 are observed in TPD after 2-butanol (C_2H_5CH~(16)OHCH_3) was dosed onto Au(111) precovered with ~(18)O_a. This oxygen exchange phenomenon serves as strong evidence for the C-O bond cleavage in 2-butanol partial oxidation to 2-butanone. Two surface intermediates are proposed for the selective oxidation of 2-butanol: 2-butoxide and η~2-aldehyde. As oxygen coverage increases, full oxidation is activated in addition to selective partial oxidation.
机译:使用程序升温脱附(TPD)和分子束反应性散射(MBRS)在超高真空(UHV)条件下提供了2-丁醇在氧气预覆盖的Au(111)上部分氧化中C-0键断裂的直接证据。预先覆盖氧气的Au(111)表面可以在低氧气覆盖率下以接近100%的选择性促进2-丁醇部分氧化为2-丁酮,而2-丁醇则在干净的Au(111)表面上进行分子吸附和解吸。在将2-丁醇(C_2H_5CH〜(16)OHCH_3)计量加入预先~~(18)O_a的Au(111)上后,在TPD中观察到C_2H_5C〜(16)OCH_3和C_2H_5C〜(18)OCH_3。这种氧交换现象为2-丁醇部分氧化成2-丁酮中的C-O键断裂提供了有力证据。提出了用于2-丁醇选择性氧化的两种表面中间体:2-丁氧化物和η〜2-醛。随着氧气覆盖率的增加,除选择性部分氧化外,还将激活完全氧化。

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  • 来源
    《Journal of the American Chemical Society》 |2009年第44期|16189-16194|共6页
  • 作者单位

    Departments of Chemical Engineering and Chemistry, University of Texas at Austin, University Station C0400, Austin, Texas, 78712-0231;

    Department of Chemistry and Chemical Biology,Harvard University, Cambridge, MA 02138;

    Departments of Chemical Engineering and Chemistry, University of Texas at Austin, University Station C0400, Austin, Texas, 78712-0231;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:17:26

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