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Selective oxofunctionalization of cyclohexene over titanium dioxide‐based and bismuth oxyhalide photocatalysts by visible light irradiation

  • Adolfo Henríquez
  • , Héctor D. Mansilla
  • , Azael Martínez–de la Cruz
  • , Lorena Cornejo‐Ponce
  • , Eduardo Schott
  • , David Contreras
  • Universidad de Tarapacá
  • Universidad de Concepción
  • Universidad Autonoma de Nuevo Leon
  • Universidad de Chile
  • ANID – Millennium Science Initiative Program-Millennium Nuclei on Catalytic Process towards Sustainable Chemistry (CSC)

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

Photocatalysis driven under visible light allows us to carry out hydrocarbon oxofunctionalization under ambient conditions, using molecular oxygen as a sacrificial reagent, with the absence of hazardous subproducts and the potential use of the Sun as a clean and low‐cost source of light. In this work, eight materials—five based on titanium dioxide and three based on bismuth oxyhalides—were used as photocatalysts in the selective oxofunctionalization of cyclohexene. The cyclohexane oxofunctionalization reactions were performed inside of a homemade photoreactor equipped with a 400 W metal halide lamp and injected air as a source of molecular oxygen. In all assayed systems, the main oxygenated products, identified by mass spectrometry, were 1,2‐epoxycyclohexane, 2‐cyclohexen‐1‐ol, and 2‐cyclohexen‐1‐one. Titanium dioxide‐based materials exhibited higher selectivities for 1,2‐epoxycyclohexane than bismuth oxyhalide‐based materials. In addition to this, titanium dioxide doped with iron exhibited the best selectivity for 1,2‐epoxycyclohexane, demonstrating that iron plays a relevant role in the cyclohexene epoxidation process.

Original languageEnglish
Article number1448
Pages (from-to)1-14
Number of pages14
JournalCatalysts
Volume10
Issue number12
DOIs
StatePublished - Dec 2020

Keywords

  • Bismuth oxyhalide
  • Cyclohexene
  • Oxofunctionalization
  • Photocatalysis
  • Titanium dioxide

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