Title of article
Selective oxidation of cyclohexene, toluene and ethyl benzene catalyzed by bis-(Ltyrosinato) copper(II), immersed in a magnetite-infused silica matrix
Author/Authors
Ghorbanloo ، M. Department of Chemistry - Faculty of Science - University of Zanjan , Mohamadi ، A. Department of Chemistry - Faculty of Science - University of Zanjan , Yahiro ، H. Department of Applied Chemistry - Faculty of Engineering - Ehime University
From page
118
To page
126
Abstract
Bis-(L-tyrosinato)copper(II) was reacted with 3-(chloropropyl)-trimethoxysilane functionalized silica that has infused magnetite to yield a magnetically separable catalyst in which the copper carboxylate is covalently linked to the silica matrix through the silane linkage. The immobilized catalyst has been characterized by spectroscopic studies (such as FT-IR, EPR, Magnetic Measurement, SEM) and chemical analyses. The immobilized catalytic system functions as an efficient heterogeneous catalyst for oxidation of cyclohexene, toluene and ethyl benzene in the presence of hydrogen peroxide (as an oxidant) and sodium bicarbonate (a co-catalyst). The reaction conditions have been optimized for solvent, temperature and amount of oxidant and catalyst. Comparison of the encapsulated catalyst with the corresponding homogeneous catalyst showed that the heterogeneous catalyst had higher activity and selectivity than the homogeneous catalyst. The immobilized catalyst could be readily recovered from the reaction mixture by using a simple magnet, and reused up to five times without any loss of activity.
Keywords
Magnetic , Heterogeneous catalyst , Nanoparticles , H2O2 , NaHCO3
Journal title
Nanochemistry Research (NCR)
Journal title
Nanochemistry Research (NCR)
Record number
2516236
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