Abstract
Chitosan-grafted-poly(4-vinylpyridine) (Cs-PVP) copolymers could be synthesized under heterogeneous conditions in presence of a potassium persulfate and sodium sulfite redox system. The synthesized graft copolymer could be utilized effectively, in the form of beads, as an efficient catalyst for Michael additions of active methylenes to functionally substituted alkenes. Moreover, methyl moiety oxidation in methyl pyridazinyl carbonitriles by H 2O2 in the presence of chitosan-g-polyvinyl pyridine-supported iron (III) complex, Cs-PVP/Fe, could be affected. A variety of pyrans, naphthopyrans, and thiopyrans could be synthesized efficiently in the presence of these graft copolymer beads by novel catalytic routes. These polymeric catalysts could be used instead of the old toxic commercial organic basic catalysts, piperidine or pyridine, and could be readily isolated from the reaction mixture and recycled several times without significant loss of catalytic activity. © 1996-2013 MDPI AG (Basel, Switzerland).
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Khalil, K. D., & Al-Matar, H. M. (2013). Chitosan based heterogeneous catalyses: Chitosan-grafted-poly(4- Vinylpyridne) as an efficient catalyst for michael additions and alkylpyridazinyl carbonitrile oxidation. Molecules, 18(5), 5288–5305. https://doi.org/10.3390/molecules18055288
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