Affiliations 

  • 1 Department of Chemistry, Faculty of Science, King Khalid University, Abha 61413, Saudi Arabia. mselvaraj@kku.edu.sa
  • 2 Department of Chemistry, National Institute of Technology Silchar, Assam, 788010, India
  • 3 Department of Chemistry, RV College of Engineering, Bengaluru, 560059, India
  • 4 School of Chemical Sciences, Universiti Sains Malaysia, 11800 Penang, Malaysia
  • 5 Department of Inorganic Chemistry, School of Chemistry, Madurai Kamaraj University, Madurai, 625 021, Tamil Nadu, India
  • 6 Indian Association for the Cultivation of Science, Jadavpur, Kolkata - 700 032, India
  • 7 Department of Chemistry, Indian Institute of Technology Hyderabad, Kandi, Sangareddy, Telangana, India
Dalton Trans, 2021 Nov 02;50(42):15118-15128.
PMID: 34612261 DOI: 10.1039/d1dt01760h

Abstract

A sustainable method was used to produce aromatic ketones by the solvent-free benzylic oxidation of aromatics over mesoporous Cu(II)-containing propylsalicylaldimine anchored on the surface of Santa Barbara Amorphous type material-15 (CPSA-SBA-15) catalysts. For comparison, mesoporous Cu(II)-containing propylsalicylaldimine anchored with Mobil Composition of Matter-41 (CPSA-MCM-41) was assessed for these reactions under similar reaction conditions. The washed CPSA-SBA-15(0.2) (W-CPSA-SBA-15(0.2)) catalyst was prepared using an easy chemical method for the complete removal of non-framework CuO nanoparticle species on the surface of pristine CPSA-SBA-15(0.2) (p-CPSA-SBA-15(0.2) prepared with 0.2 wt% of Cu, and its catalytic activity was evaluated with different reaction parameters, oxidants and solvents. In order to confirm the catalytic stability, the recyclability was assessed, and the performance of hot-filtration experiments was also evaluated. All the catalysts used for these catalytic reactions were characterized using many instrumental techniques to pinpoint the mesoporous nature and active sites of the catalysts. The proposed reaction mechanism has been well documented on the basis of catalytic results obtained for solvent-free oxidation of aromatics. Based on the catalytic results, we found that W-CPSA-SBA-15(0.2) is a very ecofriendly catalyst with exceptional catalytic activity.

* Title and MeSH Headings from MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine.