• Title of article

    Activity and selectivity of colloidal platinum nanocatalysts for aqueous phase cyclohexenone hydrogenation Original Research Article

  • Author/Authors

    Nathan E. Musselwhite، نويسنده , , Sarah B. Wagner، نويسنده , , Kimberly A. Manbeck، نويسنده , , Lindsay M. Carl، نويسنده , , Kyle M. Gross، نويسنده , , Anderson L. Marsh، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    6
  • From page
    104
  • To page
    109
  • Abstract
    The effect of varying the particle size of poly(vinylpyrrolidone)-capped colloidal platinum nanocatalysts, synthesized in the 1–10 nm size range, on the activity and selectivity during the aqueous-phase hydrogenation of cyclohexenone was investigated. For all particle sizes utilized, products observed during the reaction in order of increasing selectivity were cyclohexenol, cyclohexanol, and cyclohexanone. Selectivity for the unsaturated alcohol (cyclohexenol) was found to be highest for the smallest-sized nanocatalyst, whereas selectivity for the saturated ketone (cyclohexanone) was found to be highest for the largest-sized nanocatalyst. Activities for cyclohexenone hydrogenation were observed to increase with increasing particle size, yet apparent activation energies were determined to be similar for 2.9–7.1 nm nanocatalysts, likely indicating that the same surface reaction is kinetically favored on these nanocatalyst surfaces. Attenuated total reflectance infrared (ATR-IR) spectroscopic measurements on adsorbed cyclohexenone suggest the η1(Cdouble bond; length as m-dashO) form is more prevalent on the smaller sized nanocatalysts, while the η2(Cdouble bond; length as m-dashC) and η4(Cdouble bond; length as m-dashO, Cdouble bond; length as m-dashC) forms are more preferred on the larger sized nanocatalyst. The findings presented herein provide further evidence that structure sensitivity in ketone hydrogenation reactions is linked with catalyst surface structure and adsorbate orientation.
  • Keywords
    Ketone , chemoselective hydrogenation , Colloidal platinum , Nanocatalyst
  • Journal title
    Applied Catalysis A:General
  • Serial Year
    2011
  • Journal title
    Applied Catalysis A:General
  • Record number

    1156447