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Updated: Feb 4, 2026

Ligand-Mediated Nucleation and Growth of Palladium Metal Nanoparticles
Published on: June 25, 2018
Advances in Magnetic Nanoparticles-Supported Palladium Complexes for Coupling Reactions
1Department of Chemistry, Faculty of Science, University of Qom, Qom 37185-359, Iran. mahmoudnasr81@gmail.com.
Magnetic nanoparticles-supported palladium catalysts offer reusable and stable solutions for forming carbon-carbon and carbon-heteroatom bonds. This review details their preparation, characterization, and application in key organic synthesis reactions.
Area of Science:
- Organic Chemistry
- Materials Science
- Catalysis
Background:
- Transition-metal-catalyzed reactions are crucial for synthesizing complex organic molecules.
- Carbon-carbon (C-C) and carbon-heteroatom (C-X) bond formation are fundamental in organic synthesis.
- Heterogeneous catalysts offer advantages in terms of separation and reusability.
Purpose of the Study:
- To review recent advances in magnetic nanoparticles-supported palladium complexes.
- To discuss the preparation, characterization, and catalytic applications of these complexes.
- To highlight their reusability in C-C and C-X bond formation reactions.
Main Methods:
- Preparation and characterization of palladium complexes supported on magnetic nanoparticles.
- Application of these heterogeneous catalysts in various coupling reactions.
- Evaluation of catalyst reusability and stability.
Main Results:
- Magnetic nanoparticles-supported palladium complexes demonstrate high efficiency and versatility.
- These catalysts are effective for a broad range of C-C and C-X coupling reactions.
- Excellent reusability and thermal stability were observed.
Conclusions:
- Magnetic nanoparticles-supported palladium complexes are highly effective heterogeneous catalysts for C-C and C-X bond formation.
- Their preparation and application in reactions like Sonogashira, Heck, and Suzuki-Miyaura couplings are well-established.
- These catalysts represent a significant advancement in sustainable organic synthesis.
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