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Metal-Organic Framework Derivatives for Improving the Catalytic Activity of the CO Oxidation Reaction.

Wenlan JiZhiling XuPengfei LiuSuoying ZhangWeiqiang ZhouHongfeng LiTao ZhangLinjie LiXiaohua LuJiansheng WuWeina ZhangFengwei Huo
Published in: ACS applied materials & interfaces (2017)
Metal-organic framework (MOF)-based derivatives have attracted an increasing interest in various research fields. However, most of the reported papers mainly focus on pristine MOF-based derivatives, and research studies on functional MOF-based derivative composites are rare. Here, a simple strategy has been reported to design functional MOF-based derivative composites by the encapsulation of metal nanoparticle (MNP) in MOF matrixes (MNP@MOF) and the high-temperature calcination of MNP@MOF composites. The as-prepared MNP@metal oxide composites with a hierarchical pore structure exhibited excellent catalytic activity and high stability for the CO oxidation reaction.
Keyphrases
  • metal organic framework
  • reduced graphene oxide
  • high temperature
  • visible light
  • nitric oxide
  • electron transfer
  • gold nanoparticles