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Rate enhancement of phenol hydrogenation on Pt by hydronium ions in the aqueous phase

  • Guoju Yang
  • , Vineet Maliekkal
  • , Xi Chen
  • , Sebastian Eckstein
  • , Hui Shi
  • , Donald M. Camaioni
  • , Eszter Baráth
  • , Gary L. Haller
  • , Yue Liu*
  • , Matthew Neurock
  • , Johannes A. Lercher
  • *此作品的通讯作者
  • Jilin University
  • Technical University of Munich
  • University of Minnesota Twin Cities
  • Pacific Northwest National Laboratory

科研成果: 期刊稿件文章同行评审

摘要

Metal-containing zeolites exhibit remarkable catalytic activity for hydrogenation owing to the synergistic interactions between acid and metal sites. In the aqueous phase, the presence of water and, in particular, hydronium ions, complicate the adsorption of H2 and organic substrates. It is shown how hydrated hydronium ions formed from zeolite Brønsted acid sites promote the rate of hydrogenation of phenol on Pt by modifying reaction pathways in the aqueous phase. Hydrogen is preferentially added to the ortho-C of phenol at low concentrations of hydronium ions, while at high concentrations of hydronium ions hydrogen adds to both ortho- and para-C of phenol with equal probability. A proton coupled electron transfer (PCET) pathway is hypothesized to occur at metal surfaces associated with large concentrations of hydrated hydronium ions and adsorbed H, establishing a (quasi-) equilibrium open circuit potential. In the presence of lower concentrations of hydrated hydronium ions, the reaction follows a Langmuir-Hinshelwood mechanism in which adsorbed H atoms add to co-adsorbed phenol. DFT calculations show a lower activation energy barrier for the PCET pathway in the presence of hydronium ions compared to the pathway following a Langmuir-Hinshelwood type mechanism.

源语言英语
页(从-至)579-593
页数15
期刊Journal of Catalysis
404
DOI
出版状态已出版 - 12月 2021

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