Issue 65, 2017, Issue in Progress

Design and synthesis of bi-functional Co-containing zeolite ETS-10 catalyst with high activity in the oxidative coupling of alkenes with aldehydes for preparing α,β-epoxy ketones

Abstract

Developing highly efficient heterogeneous catalysts for organic synthesis is of great importance in modern synthetic chemistry. In this work, Co (or Ni)-containing mesoporous zeolite ETS-10 (Co-METS-10 and Ni-METS-10) with both metal and strong basic sites were synthesized and applied for the direct oxidative coupling of alkenes with benzaldehydes to synthesize α,β-epoxy ketones. Co (or Ni)-METS-10 catalysts show high activity and product selectivity, as compared to metal-free mesoporous zeolite ETS-10 (METS-10). This feature is attributed to the fact that the highly dispersed Co (or Ni) species could facilitate the tert-butyl hydroperoxide transformation into more alkyloxy and alkylperoxy radicals, which triggers the alkenes undergoing radical addition with aldehyde and alkylperoxy to form β-peroxy ketones. Meanwhile, the basic sites on Co (or Ni)-METS-10 catalysts benefit the formation of α,β-epoxy ketone from β-peroxy ketone.

Graphical abstract: Design and synthesis of bi-functional Co-containing zeolite ETS-10 catalyst with high activity in the oxidative coupling of alkenes with aldehydes for preparing α,β-epoxy ketones

Supplementary files

Article information

Article type
Paper
Submitted
19 Jun 2017
Accepted
15 Aug 2017
First published
23 Aug 2017
This article is Open Access
Creative Commons BY license

RSC Adv., 2017,7, 41204-41209

Design and synthesis of bi-functional Co-containing zeolite ETS-10 catalyst with high activity in the oxidative coupling of alkenes with aldehydes for preparing α,β-epoxy ketones

J. Hu, F. Xia, F. Yang, J. Weng, P. Yao, C. Zheng, C. Zhu, T. Tang and W. Fu, RSC Adv., 2017, 7, 41204 DOI: 10.1039/C7RA06828J

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