Magnetic chitosan stabilized palladium nanostructures: Potential catalysts for aqueous Suzuki coupling reactions
Author:
Publisher
Elsevier BV
Subject
Molecular Biology,General Medicine,Biochemistry,Structural Biology
Reference69 articles.
1. Activation of aryl chlorides in water under phase-transfer agent-free and ligand-free Suzuki coupling by heterogeneous palladium supported on hybrid mesoporous carbon;Duan;ACS Catal.,2015
2. Palladium nanoparticles on graphite oxide: a recyclable catalyst for the synthesis of biaryl cores;Santra;ACS Catal.,2013
3. Encaging palladium nanoparticles in chitosan modified montmorillonite for efficient, recyclable catalysts;Zeng;ACS Appl. Mater. Interfaces,2016
4. Palladium nanoparticle-embedded polymer thin film “dip catalyst” for Suzuki-Miyaura reaction;Hariprasad;ACS Catal.,2012
5. Supported palladium on magnetic nanoparticles − starch substrate (Pd-MNPSS): highly Efficient magnetic reusable catalyst for C − C coupling reactions in water;Tukhani;ACS Sustain. Chem. Eng.,2018
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