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Synergistic effect of modified pore and heterojunction of MOF-derived α-Fe 2 O 3 /ZnO for superior photocatalytic degradation of methylene blue.

Liyana Labiba ZulfaRatna EdiatiAlvin Romadhoni Putra HidayatRiki SubagyoNuhaa FaaizatunnisaYuly KusumawatiDjoko HartantoNurul WidiastutiWahyu Prasetyo UtomoMardi Santoso
Published in: RSC advances (2023)
Mesoporous heterojunction MOF-derived α-Fe 2 O 3 /ZnO composites were prepared by a simple calcination of α-Fe 2 O 3 /ZIF-8 as a sacrificial template. The optical properties confirm that coupling of both the modified pore and the n-n heterojunction effectively reduces the possibility of photoinduced charge carrier recombination under irradiation. The mesoporous Fe(25)ZnO with 25% loading of α-Fe 2 O 3 exhibited the best performance in MB degradation, up to ∼100% after 150 minutes irradiation, higher than that of pristine ZnO and α-Fe 2 O 3 . Furthermore, after three cycles reusability, mesoporous Fe(25)ZnO still showed an excellent stability performance of up to 95.42% for degradation of MB. The proposed photocatalytic mechanism of mesoporous Fe(25)ZnO for the degradation of MB corresponds to the n-n heterojunction system. This study provides a valuable reference for preparing mesoporous MOF-derived metal oxides with an n-n heterojunction system to enhance MB photodegradation.
Keyphrases
  • visible light
  • metal organic framework
  • highly efficient
  • radiation induced
  • solar cells
  • simultaneous determination
  • liquid chromatography