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Solving the Water Hypersensitive Challenge of Sulfated Solid Superacid in Acid-Catalyzed Reactions.

Licheng LiHaiqin YueSuoying ZhangYao-Bing HuangWeina ZhangPeng WuYongxin JiFengwei Huo
Published in: ACS applied materials & interfaces (2019)
In the past decades, water tolerance has always been the long-pending key issue of sulfated solid superacids (SO42-/M xO y) toward industrial applications. Herein, we report a strategy for the facile coating of a thick tunable hydrophobic layer over SO42-/M xO y, which can significantly improve water tolerance, with negligible inhibition on the catalytic performance of SO42-/M xO y. Even after being directly immersed in water, the hydrophobic SO42-/M xO y can still maintain above 90% of original catalytic activity, whereas pristine SO42-/M xO y and control samples are almost completely deactivated. This strategy opens a new route to enhance the water tolerance of sulfated solid superacids.
Keyphrases
  • ionic liquid
  • wastewater treatment
  • risk assessment
  • gold nanoparticles