AI Article Synopsis

  • Strong metal-support interaction (SMSI) enhances catalytic performance in volatile organic compound (VOC) abatement, particularly for toluene oxidation.
  • The study involves modulating oxygen vacancy concentration in ceria (CeO) through a NaBH reduction method to create a stronger SMSI with platinum (Pt), leading to improved electron transfer and catalytic ability.
  • The optimal interaction is found in the Pt/CeO-0.5 catalyst, which balances the positive effects of enhanced electron richness and the negative impacts of smaller Pt dispersion for effective toluene abatement.

Article Abstract

Strong metal-support interaction (SMSI), which has drawn widespread attention in heterogeneous catalysis, is thought to significantly affect the catalytic performance for volatile organic chemical (VOC) abatement. In the present study, strong interactions between platinum and ceria are constructed by modulating the oxygen vacancy concentration of CeO through a NaBH reduction method. For a catalyst with higher content of oxygen vacancy, more electrons would transfer from ceria to Pt, which is attributed to the stronger effect of SMSI. The obtained electron-richer Pt sites exhibit higher ability for toluene activation, contributing to better performance for toluene oxidation. On the other hand, the stronger metal-support interaction would facilitate CeOx species migrating to the Pt nanoparticle surface and forming an encapsulated structure. Smaller Pt dispersion leads to fewer sites for toluene adsorption and activation, which is to the disadvantage of the reaction. Therefore, taking the negative and positive effects together, the Pt/CeO-0.5 catalyst has the highest catalytic performance for toluene abatement. Our study provides new insights into strong metal-support interaction on toluene oxidation and contributes to designing noble metal catalysts for VOC abatement.

Download full-text PDF

Source
http://dx.doi.org/10.1021/acs.langmuir.4c01209DOI Listing

Publication Analysis

Top Keywords

metal-support interaction
16
strong metal-support
12
catalytic performance
8
voc abatement
8
abatement study
8
oxygen vacancy
8
performance toluene
8
toluene oxidation
8
toluene
6
catalytic oxidation
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!