Enhancement of catalytic activity by homo-dispersing S2O82--Fe2O3 nanoparticles on SBA-15 through ultrasonic adsorption

Qingyan Chu, Jing Chen, Wenhua Hou, Haoxuan Yu, Ping Wang, Rui Liu, Guangliang Song, Hongjun Zhu, Pingping Zhao

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

Mesoporous superacids S2O82--Fe2O3/SBA-15 (SFS) with active nanoparticles are prepared by ultrasonic adsorption method. This method is adopted to ensure a homo-dispersed nanoparticle active phase, large specific surface area and many acidic sites. Compared with bulk S2O82--Fe2O3, Brönsted acid catalysts and other reported catalysts, SFS with an Fe2O3 loading of 30% (SFS-30) exhibits an outstanding activity in the probe reaction of alcoholysis of styrene oxide by methanol with 100% yield. Moreover, SFS-30 also shows a more excellent catalytic performance than bulk S2O82--Fe2O3 towards the alcoholysis of other ROHs (R = C2H5-C4H9). Lewis and Brönsted acid sites on the SFS-30 surfaces are confirmed by pyridine adsorbed infrared spectra. The highly efficient catalytic activity of SFS-30 may be attributed to the synergistic effect from the nano-effect of S2O82--Fe2O3 nanoparticles and the mesostructure of SBA-15. Finally, SFS-30 shows a good catalytic reusability, providing an 84.1% yield after seven catalytic cycles.

Translated title of the contribution超声吸附制备均匀分散在SBA-15的S2O82--Fe2O3纳米粒子:增强S2O82--e2O3本体催化活性
Original languageEnglish
Pages (from-to)955-963
Number of pages9
JournalChinese Journal of Catalysis
Volume39
Issue number5
DOIs
StatePublished - 1 May 2018

Keywords

  • Acidic site
  • Alcoholysis
  • Mesoporous superacid
  • Nano effect
  • Nanoparticle
  • SO-FeO/SBA-15
  • Ultrasonic adsorption

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