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  Palladium NanoparticlesImmobilized on Nano-silica Triazine Dendritic Polymer (Pdnp-nSTDP): An Efficient and Reusable Catalyst for Suzuki-Miyaura Cross-Coupling and Heck Reactions

Isfahani, A. L., Mohammadpoor-Baltork, I., Mirkhani, V., Tangestaninejad, S., & Kia, R. (2013). Palladium NanoparticlesImmobilized on Nano-silica Triazine Dendritic Polymer (Pdnp-nSTDP): An Efficient and Reusable Catalyst for Suzuki-Miyaura Cross-Coupling and Heck Reactions. Advanced Synthesis and Catalysis, 355(5), 957-972. doi:10.1002/adsc.201200707.

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Isfahani, A.. L., Author
Mohammadpoor-Baltork, I., Author
Mirkhani, V., Author
Tangestaninejad, S., Author
Kia, R.1, Author           
Affiliations:
1Research Group of Structural Dynamics of (Bio)Chemical Systems, MPI for Biophysical Chemistry, Max Planck Society, ou_578564              

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 Abstract: A new catalyst based on palladium nanoparticles immobilized on nano-silica triazine dendritic polymer (Pdnp-nSTDP) was synthesized and characterized by FT-IR spectroscopy, thermogravimetric analysis, field emission scanning electron microscopy, energy dispersive X-ray, transmission electron microscopy and elemental analysis. The size of the palladium nanoparticles was determined to be 3.1±0.5 nm. This catalytic system showed high activity in the Suzuki–Miyaura cross-coupling of aryl iodides, bromides and chlorides with arylboronic acids and also in the Heck reaction of these aryl halides with styrenes. These reactions were best performed in a dimethylformamide (DMF)/water mixture (1:3) in the presence of only 0.006 mol% and 0.01 mol% of the catalyst, respectively, under conventional conditions and microwave irradiation to afford the desired coupling products in high yields. The Pdnp-nSTDP was also used as an efficient catalyst for the preparation of a series of star- and banana-shaped compounds with a benzene, pyridine, pyrimidine or 1,3,5-triazine unit as the central core. Moreover, the catalyst could be recovered easily and reused several times without any considerable loss of its catalytic activity.

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Language(s): eng - English
 Dates: 2013-03-19
 Publication Status: Published online
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 Rev. Type: Peer
 Identifiers: DOI: 10.1002/adsc.201200707
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Title: Advanced Synthesis and Catalysis
Source Genre: Journal
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Pages: - Volume / Issue: 355 (5) Sequence Number: - Start / End Page: 957 - 972 Identifier: -