Palladiumimmobilized on chitosan nanofibers cross-linked by glutaraldehyde as an efficient catalyst for the Mizoroki–Heck reaction
- Autores: Wang Z.1, Xu M.1, Shao L.1, Qi C.1
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Afiliações:
- Zhejiang Key Laboratory of Alternative Technologies for Fine Chemicals Process
- Edição: Volume 57, Nº 3 (2016)
- Páginas: 354-359
- Seção: Article
- URL: https://journals.rcsi.science/0023-1584/article/view/162452
- DOI: https://doi.org/10.1134/S0023158416030149
- ID: 162452
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Resumo
Nonwoven chitosan (CS) nanofiber mats were successfully prepared by the electrospinning of the mixture of CS and poly(ethylene oxide) (PEO) in acetic acid aqueous solution. The CS/PEO fiber mats were treated with glutaraldehyde aqueous solution to stabilize fibers in solution. The concentration of glutaraldehyde is important for incorporating swelling properties in the cross-linked CS/PEO fiber mats. The cross-linked CS/PEO fibers (CCS/PEO fibers) were then used as supports for palladium catalysts in the Mizoroki–Heck reaction. The results of the study demonstrated that the catalytic activities of Pd catalyst supported on CCS/PEO fiber (Pd-CCS/PEO fiber) were highly dependent on the concentration of glutaraldehyde in the cross-linking process. Density functional theory (DFT) calculations indicated that the Schiff bond formed between CS and glutaraldehyde could reduce the energy needed to form a chelate complex between the CCS/PEO fibers and palladium active species. This in turn could decrease the activation energy of the Mizoroki–Heck reactions which occur in the presence of the Pd-CCS/PEO fiber catalysts. The optimized Pd-CCS/PEO fiber catalyst was very efficient and stable in the Mizoroki–Heck reaction of aromatic iodides with olefins.
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Sobre autores
Z. Wang
Zhejiang Key Laboratory of Alternative Technologies for Fine Chemicals Process
Email: qichenze@usx.edu.cn
República Popular da China, Zhejiang Province, 312000
M. Xu
Zhejiang Key Laboratory of Alternative Technologies for Fine Chemicals Process
Email: qichenze@usx.edu.cn
República Popular da China, Zhejiang Province, 312000
L. Shao
Zhejiang Key Laboratory of Alternative Technologies for Fine Chemicals Process
Email: qichenze@usx.edu.cn
República Popular da China, Zhejiang Province, 312000
C. Qi
Zhejiang Key Laboratory of Alternative Technologies for Fine Chemicals Process
Autor responsável pela correspondência
Email: qichenze@usx.edu.cn
República Popular da China, Zhejiang Province, 312000
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